Chip-based microcavities coupled to nitrogen-vacancy centers in single crystal diamond University of Calgary | Publication | 2009-01-01 | P. E. Barclay, K. C. Fu, C. M. Santori, R. G. Beausoleil |
Integration of fiber-coupled high-Q SiN[sub x] microdisks with atom chips University of Calgary | Publication | 2006-01-01 | P. E. Barclay, K. Srinivasan, O. Painter, B. Lev, H. Mabuchi |
Nonlinear response of silicon photonic crystal micresonators excited via an integrated waveguide and fiber taper University of Calgary | Publication | 2005-01-01 | P. E. Barclay, K. Srinivasan, O. Painter |
Probing the dispersive and spatial properties of photonic crystal waveguides via highly efficient coupling from fiber tapers University of Calgary | Publication | 2004-01-01 | P. E. Barclay, K. Srinivasan, M. Borselli, O. Painter |
Design of photonic crystal waveguides for evanescent coupling to optical fiber tapers and integration with high-Q cavities University of Calgary | Publication | 2003-01-01 | P. E. Barclay, K. Srinivasan, O. Painter |
Hybrid Nanocavity Resonant Enhancement of Color Center Emission in Diamond University of Calgary | Publication | 2011-09-01 | P. E. Barclay, K. C. Fu, C. M. Santori, A. Faraon, R. G. Beausoleil |
Principles of quantum information processing (QIP) using diamond University of Calgary | Publication | 2014-01-01 | P. E. Barclay |
Hybrid nanocavities for resonant enhancement of color center emission in diamond University of Calgary | Publication | 2011-01-01 | P. E. Barclay, K. -. Fu, C. M. Santori, A. Faraon, R. G. Beausoleil |
Diamond nanophotonics: a platform for quantum optics and sensing University of Calgary | Presentation | 2012-03-08 | P. E. Barclay |
Nanophotonics and quantum optics with diamond NV centers University of Calgary | Presentation | 2012-02-24 | P. E. Barclay |
Quantum optics and nanophotonics with diamond nitrogen vacancy centersThe diamond nitrogen-vacancy (NV) center is an optically active impurity whose “atom-like” properties make it a promising solid state qubit, in which well-defined optical transitions are used to control the quantum state of single NV electron and nuclear spins. These properties have led to impressive demonstrations of quantum information storage in single NV nuclear spins, entanglement between NV electron spins and single photons, and implementations of high resolution optical magnetometers using single NVs.
A missing ingredient for implementing quantum information processing architectures with NVs is creating scalable coherent coupling between them. Nanophotonic circuits, in which waveguides function as a “quantum bus” between NVs embedded in optical microcavities, offer a chip-based solution to this hurdle. In my talk I will review recent advances in realizing nanophotonic devices in diamond based materials. I will present results demonstrating Purcell enhanced coupling between optical nanocavities and NVs in single crystal diamond, and will discuss opportunities and challenges which lay ahead for diamond quantum optics. University of Calgary | Presentation | 2011-04-01 | P. E. Barclay |
Diamond nanophotonics a platform for quantum information processing, metrology and nanomechanics University of Calgary | Presentation | 2011-11-25 | P. E. Barclay |
Diamond nanophotonics a platform for quantum information processing, metrology and nanomechanics University of Calgary | Presentation | 2011-11-18 | P. E. Barclay |
Nanophotonics and quantum optics in single crystal diamondThe diamond nitrogen-vacancy (NV) center is an optically active impurity whose ‘atom-like’ properties make it a promising solid state qubit, in which well-defined optical transitions are used to control the quantum state of single NV electron and nuclear spins. In my talk I will review recent advances in realizing nanophotonic devices in diamond based materials. I will present results demonstrating Purcell enhanced coupling between optical nanocavities and NVs in single crystal diamond, and will discuss opportunities and challenges which lay ahead for diamond quantum optics. University of Calgary | Presentation | 2011-10-20 | P. E. Barclay |
Diamond nanophotonics a platform for quantum optics and sensing The diamond nitrogen-vacancy (NV) center is an optically active impurity whose ‘atom-like’ properties make it a promising solid state qubit, in which well-defined optical transitions are used to control the quantum state of single NV electron and nuclear spins. These properties have led to impressive demonstrations of quantum information storage in single NV nuclear spins, entanglement between NV electron spins and single photons, and high resolution optical magnetometery using single NVs.
A missing ingredient for implementing information processing devices with NVs is the ability to demonstrate coherent optical coupling between them. Nanophotonic circuits, in which waveguides function as coherent connections between NVs embedded in optical microcavities, offer a chip-based solution to this hurdle. In my talk I will review recent advances in realizing nanophotonic devices in diamond based materials, and present results demonstrating Purcell enhanced resonant coupling between optical nanocavities and NVs in single crystal diamond. I will also discuss future opportunities in diamond based electro- and optomechanics.
University of Calgary | Presentation | 2012-02-16 | P. E. Barclay |
Diamond nanophotonics and quantum opticsThe diamond nitrogen-vacancy (NV) center is an optically active impurity whose ‘atom-like’ properties make it a promising solid state qubit, in which well-defined optical transitions are used to control the quantum state of single NV electron and nuclear spins. These properties have led to impressive demonstrations of quantum information storage in single NV nuclear spins, entanglement between NV electron spins and single photons, and implementations of high resolution optical magnetometers using single NVs.
A missing ingredient for implementing quantum information processing architectures with NVs is creating scalable coherent coupling between them. Nanophotonic circuits, in which waveguides function as a “quantum bus” between NVs embedded in optical microcavities, offer a chip-based solution to this hurdle. In my talk I will review recent advances in realizing nanophotonic devices in diamond based materials. I will present results demonstrating Purcell enhanced coupling between optical nanocavities and NVs in single crystal diamond. I will also discuss opportunities and challenges which lay ahead for using diamond nanophotonics in the field of optomechanics and in sensor applications. University of Calgary | Presentation | 2012-01-20 | P. E. Barclay |
Diamond nanophotonics and quantum optics University of Calgary | Presentation | 2011-09-22 | P. E. Barclay |
Diamond nanophotonics and quantum optics University of Calgary | Presentation | 2011-09-21 | P. E. Barclay |
Quantum nanophotonics University of Calgary | Presentation | 2012-03-27 | P. E. Barclay |
Quantum Nanophotonics University of Calgary | Presentation | 2011-07-06 | P. E. Barclay |
Nanoscale optomechanics: sensors and hybrid quantum systemsRecent advances in optomechanics utilize the co-localization of optical and mechanical modes for coherent energy exchange between photons and phonons within nanoscale structures. These optomechanical devices have demonstrated exceptional promise as sensors of mechanical motion, and as probes of mesoscopic quantum effects. In this talk I will review these advances, and discuss efforts to create optomechanical devices optimized for detecting torsional excitations associated with nanoelectronic and magnetic systems. I will also examine the possibility of studying the interaction between electron spins embedded within optomechanical devices and single phonons. University of Calgary | Presentation | 2012-09-12 | P. E. Barclay |
Quantum and nano science at IQIS and NINT University of Calgary | Presentation | 2012-09-12 | P. E. Barclay |
Quantum nanophotonics University of Calgary | Presentation | 2011-12-05 | P. E. Barclay |
Nanophotonics and quantum optics in diamond University of Calgary | Presentation | 2011-09-22 | P. E. Barclay |
Talking to spins with photons: diamond nanophotonics University of Calgary | Presentation | 2011-05-31 | P. E. Barclay |
Nanophotonics and quantum optics in CVD diamond University of Calgary | Presentation | 2012-05-28 | P. E. Barclay |
Nanoscale optomechanics: sensors and hybrid quantum systemsRecent advances in optomechanics utilize the co-localization of optical and mechanical modes for coherent energy exchange between photons and phonons within nanoscale structures. These optomechanical devices have demonstrated exceptional promise as sensors of mechanical motion, and as probes of mesoscopic quantum effects. In this talk I will review these advances, and discuss efforts to create optomechanical devices optimized for detecting torsional excitations associated with nanoelectronic and magnetic systems. I will also examine the possibility of studying the interaction between electron spins embedded within optomechanical devices and single phonons. Presentation co-sponsored by PIMS CRG MQI. University of Calgary | Presentation | 2012-11-13 | P. E. Barclay |
Talking to spins with photons: diamond nanophotonics University of Calgary | Presentation | 2011-03-29 | P. E. Barclay |
Impurities in diamond University of Calgary | Presentation | 2012-08-13 | P. E. Barclay |
Nanoscale silicon optomechanics University of Calgary | Presentation | 2012-11-05 | P. E. Barclay |
Nanophotonics and quantum optics with diamond NV centers University of Calgary | Presentation | 2011-06-14 | P. E. Barclay |
Optomechanical nanocavities for sensing and quantum optics University of Calgary | Presentation | 2013-06-05 | P. E. Barclay |
Nanoscale silicon optomechanics University of Calgary | Presentation | 2013-06-02 | P. E. Barclay |
Diamond nanostructures for optomechanics and quantum optics University of Calgary | Presentation | 2014-02-04 | P. E. Barclay |
Nanocavity optomechanics for coupling to quantum systems University of Calgary | Presentation | 2013-10-10 | P. E. Barclay |
Nanoscale optomechanics for sensing and hybrid quantum systems University of Calgary | Presentation | 2013-08-16 | P. E. Barclay |
Nanoscale optomechanical sensors: split-beam nanocavities University of Calgary | Presentation | 2013-08-19 | P. E. Barclay |
Nanophotonics and quantum optics in single crystal diamond University of Calgary | Presentation | 2011-10-21 | P. E. Barclay |
Quantum nanophotonics University of Calgary | Presentation | 2011-06-24 | P. E. Barclay |
Nanoscale optomechanics for sensing and hybrid quantum systems University of Calgary | Publication | 2013-08-01 | P. E. Barclay |
Nanocavity enhanced diamond nitrogen-vacancy center zero phonon line emission University of Calgary | Publication | 2011-05-01 | P. E. Barclay, K. M. Fu, A. Faraon, C. M. Santori, R. G. Beausoleil |
Towards efficient nanophotonic coupling to NV centers University of Calgary | Publication | 2011-01-01 | P. E. Barclay, K. M. Fu, C. M. Santori, A. Faraon, R. G. Beausoleil |
Nitrogen-Vacancy Centers Optically Coupled to Hybrid Microcavities University of Calgary | Publication | 2010-05-01 | P. E. Barclay, K. M. Fu, C. M. Santori, R. G. Beausoleil |
On-Chip Microcavities Coupled to Diamond NV Centers University of Calgary | Publication | 2009-10-01 | P. E. Barclay, K. M. Fu, C. M. Santori, R. G. Beausoleil |
Microcavities for Cavity-QED in Single-Crystal Diamond University of Calgary | Publication | 2009-06-01 | P. E. Barclay, K. M. Fu, C. M. Santori, R. G. Beausoleil |
Hybrid nanocavities for resonant enhancement of color center emission in diamond University of Calgary | Publication | 2011-09-01 | P. E. Barclay, K. M. Fu, C. M. Santori, A. Faraon, R. G. Beausoleil |
Chip-based microcavities coupled to NV centers in single crystal diamond University of Calgary | Publication | 2009-11-01 | P. E. Barclay, K. M. Fu, C. M. Santori, R. G. Beausoleil |
Hybrid photonic crystal cavity and waveguide for coupling to diamond NV-centers University of Calgary | Publication | 2009-06-01 | P. E. Barclay, K. M. Fu, C. M. Santori, R. G. Beausoleil |
Coherent interference effects in a nano-assembled optical cavity-QED system University of Calgary | Publication | 2009-05-01 | P. E. Barclay, O. Painter, C. M. Santori, K. M. Fu, R. G. Beausoleil |
Chapter 1: Principles of quantum information processing (QIP) using diamond University of Calgary | Publication | 2014-05-01 | P. E. Barclay |
No TitleFiled, Disclosure filed University of Calgary | Product | 2008-10-15 | P. E. Barclay, R. G. Beausoleil, K. Fu, C. M. Santori, M. Fiorentino |
Nanophotonics for quantum optics using nitrogen-vacancy centers in diamond University of Calgary | Publication | 2010-06-01 | C. M. Santori, P. E. Barclay, K. -. Fu, R. G. Beausoleil, S. Spillane, M. Fisch |
An optical-fiber-based probe for photonic crystal microcavities University of Calgary | Publication | 2005-07-01 | K. Srinivasan, P. E. Barclay, M. Borselli, O. J. Painter |
Optical-fiber-based measurement of an ultrasmall volume high- Q photonic crystal microcavity University of Calgary | Publication | 2004-08-01 | K. Srinivasan, P. E. Barclay, M. Borselli, O. Painter |
Low-loss fiber accessible plasmon waveguide for planar energy guiding and sensing University of Calgary | Publication | 2004-01-01 | S. A. Maier, P. E. Barclay, T. J. Johnson, M. D. Friedman, O. Painter |
Experimental demonstration of a high quality factor photonic crystal microcavity University of Calgary | Publication | 2003-01-01 | K. Srinivasan, P. E. Barclay, O. Painter, J. Chen, A. Y. Cho, C. Gmachl |
Low-temperature tapered-fiber probing of diamond nitrogen-vacancy ensembles coupled to GaP microcavities University of Calgary | Publication | 2011-05-01 | K. -. Fu, P. E. Barclay, C. M. Santori, A. Faraon, R. G. Beausoleil |
Resonant enhancement of the zero-phonon emission from a colour centre in a diamond cavity University of Calgary | Publication | 2011-04-01 | A. Faraon, P. E. Barclay, C. M. Santori, K. C. Fu, R. G. Beausoleil |
Optical design of split-beam photonic crystal nanocavities University of Calgary | Publication | 2013-01-01 | A. C. Hryciw, P. E. Barclay |
Low-temperature tapered-fiber probing of diamond NV ensembles coupled to GaP microcavities University of Calgary | Publication | 2011-05-01 | K. -. Fu, P. E. Barclay, C. M. Santori, A. Faraon, R. G. Beausoleil |
Resonant enhancement of the zero-phonon emission from a color center in a diamond cavity University of Calgary | Publication | 2011-01-01 | A. Faraon, P. E. Barclay, C. M. Santori, K. -. Fu, R. G. Beausoleil |
Manipulating NV centers with optomechanical crystals University of Calgary | Presentation | 2013-06-10 | B. Khanaliloo, P. E. Barclay |
Vertical distribution of nitrogen-vacancy centers in diamond formed by ion implantation and annealing University of Calgary | Publication | 2009-03-01 | C. M. Santori, P. E. Barclay, K. M. Fu, R. G. Beausoleil |
Conversion of neutral nitrogen-vacancy centers to negatively charged nitrogen-vacancy centers through selective oxidation University of Calgary | Publication | 2010-01-01 | K. -. Fu, C. M. Santori, P. E. Barclay, R. G. Beausoleil |
Observation of the Dynamic Jahn-Teller Effect in the Excited States of Nitrogen-Vacancy Centers in Diamond University of Calgary | Publication | 2009-12-01 | K. C. Fu, C. M. Santori, P. E. Barclay, L. J. Rogers, N. B. Manson, R. G. Beausoleil |
Coupling of nitrogen-vacancy centers in diamond to a GaP waveguide University of Calgary | Publication | 2008-01-01 | K. -. Fu, C. M. Santori, P. E. Barclay, I. Aharonovich, S. Prawer, N. Meyer, A. M. Holm, R. G. Beausoleil |
Experimental demonstration of fiber-accessible metal nanoparticle plasmon waveguides for planar energy guiding and sensing University of Calgary | Publication | 2005-01-01 | S. A. Maier, M. D. Friedman, P. E. Barclay, O. Painter |
Rayleigh scattering, mode coupling, and optical loss in silicon microdisks University of Calgary | Publication | 2004-01-01 | M. Borselli, K. Srinivasan, P. E. Barclay, O. Painter |
Feasibility of detecting single atoms using photonic bandgap cavities University of Calgary | Publication | 2004-07-01 | B. Lev, K. Srinivasan, P. E. Barclay, O. Painter, H. Mabuchi |
Cavity optomechanics in gallium phosphide microdisks University of Calgary | Publication | 2014-04-01 | M. Mitchell, A. C. Hryciw, P. E. Barclay |
Efficient Fiber Collection of Nitrogen-Vacancy Center Emission from Diamond Nano Beams University of Calgary | Publication | 2015-05-01 | H. Jayakumar, B. Khanaliloo, P. E. Barclay |
Cavity Opto-mechanics in Gallium Phosphide Microdisks University of Calgary | Publication | 2014-05-01 | M. Mitchell, A. C. Hryciw, P. E. Barclay |
Modification of the spontaneous emission rate of nitrogen-vacancy centers in diamond by coupling to plasmons University of Calgary | Publication | 2011-01-01 | A. Faraon, Y. C. Jun, P. E. Barclay, K. M. Fu, C. M. Santori, M. L. Brongersma, R. G. Beausoleil |
Optical properties and optical control of the electronic state of nitrogen-vacancy centers in diamond University of Calgary | Publication | 2011-01-01 | K. M. Fu, C. M. Santori, P. E. Barclay, A. Faraon, R. G. Beausoleil |
Key challenges for high-Q photonic circuits in diamond University of Calgary | Publication | 2010-11-01 | C. M. Santori, K. M. Fu, P. E. Barclay, L. J. Rogers, N. Manson, R. G. Beausoleil |
Engineering Nitrogen-vacancy Centers near the Surface of Diamond for Coupling to Optical Microcavities University of Calgary | Publication | 2010-10-01 | K. M. Fu, C. M. Santori, P. E. Barclay, A. Faraon, R. G. Beausoleil |
Optical Properties of Nitrogen-Vacancy Centers Created near a Diamond Surface University of Calgary | Publication | 2010-05-01 | K. M. Fu, C. M. Santori, P. E. Barclay, R. G. Beausoleil |
Observation of the dynamic Jahn-Teller effect in the excited states of nitrogen-vacancy centers in diamond University of Calgary | Publication | 2010-02-01 | K. M. Fu, C. M. Santori, P. E. Barclay, L. J. Rogers, N. Manson, R. G. Beausoleil |
Temperature Dependence of the Polarization and Linewidth of the Optical Transitions of Single Nitrogen-Vacancy Centers in Diamond University of Calgary | Publication | 2009-10-01 | K. M. Fu, C. M. Santori, P. E. Barclay, L. J. Rogers, N. B. Manson, R. G. Beausoleil |
Optical Coupling of Nitrogen-Vacancy Centers in Diamond to GaP Waveguides University of Calgary | Publication | 2009-05-01 | K. M. Fu, C. M. Santori, P. E. Barclay, N. Meyer, A. M. Holm, I. Aharonovich, S. Prawer, R. G. Beausoleil |
Photonic structures for QIP in diamond University of Calgary | Publication | 2009-01-01 | K. M. Fu, C. M. Santori, P. E. Barclay, N. Meyer, A. M. Holm, I. Aharonovich, S. Prawer, R. G. Beausoleil |
Structures in diamond for optical manipulation of nitrogen-vacancy centers University of Calgary | Publication | 2009-01-01 | C. M. Santori, K. M. Fu, P. E. Barclay, R. G. Beausoleil |
Conversion of neutral nitrogen-vacancy centers to negatively-charged nitrogen-vacancy centers through selective oxidation University of Calgary | Publication | 2010-03-01 | K. M. Fu, C. M. Santori, P. E. Barclay, R. G. Beausoleil |
Observation of the dynamic Jahn-Teller effect in the excited state of nitrogen-vacancy centers in diamond University of Calgary | Publication | 2009-12-01 | K. M. Fu, C. M. Santori, P. E. Barclay, L. J. Rogers, N. B. Manson, R. G. Beausoleil |
Optically integrated magnetic sensor chip based on diamond nanoparticles for biological marker detection University of Calgary | Product | 2009-02-05 | K. Fu, R. G. Beausoleil, P. E. Barclay, C. M. Santori |
On the indistinguishability of Raman photons University of Calgary | Publication | 2009-12-01 | C. M. Santori, D. A. Fattal, K. C. Fu, P. E. Barclay, R. G. Beausoleil |
Tuning of nanocavity optomechanical coupling using a near-field fiber probe University of Calgary | Publication | 2015-05-01 | A. C. Hryciw, M. Wu, B. Khanaliloo, P. E. Barclay |
Nonlinear optomechanical paddle nanocavities University of Calgary | Publication | 2015-06-01 | H. Kavani, C. Healey, M. Wu, P. E. Barclay |
Diamond nanobeam waveguide optomechanics University of Calgary | Publication | 2015-05-01 | B. Khanaliloo, H. Jayakumar, D. P. Lake, P. E. Barclay |
Monolithic Single Crystal Diamond High-Q Optical Microcavities University of Calgary | Publication | 2015-05-01 | M. Mitchell, B. Khanaliloo, A. C. Hryciw, P. E. Barclay |
Optical microcavities for quantum networks in diamond University of Calgary | Publication | 2011-05-01 | C. M. Santori, A. Faraon, K. M. Fu, P. E. Barclay |
High-Q/V monolithic diamond microdisks fabricated with quasi-isotropic etching University of Calgary | Publication | 2015-07-01 | B. Khanaliloo, M. Mitchell, A. C. Hryciw, P. E. Barclay |
Tuning of nanocavity optomechanical coupling using a near-field probe University of Calgary | Publication | 2015-05-01 | A. C. Hryciw, M. Wu, B. Khanaliloo, P. E. Barclay |
On the indistinghuishability of Raman photons University of Calgary | Publication | 2009-12-01 | C. M. Santori, D. A. Fattal, K. M. Fu, P. E. Barclay, R. G. Beausoleil |
Optical trapping chips based on guided mode resonance gratings University of Calgary | Product | 2010-04-14 | K. Fu, J. Li, R. G. Beausoleil, P. E. Barclay, D. A. Fattal |
An upper limit on the lateral vacancy diffusion length in diamond University of Calgary | Publication | 2012-01-01 | J. O. Orwa, K. Ganesan, J. Newnham, C. M. Santori, P. E. Barclay, K. -. Fu, R. G. Beausoleil, I. Aharonovich, B. A. Fairchild, P. Olivero, A. D. Greentree, S. Prawer |
Optomechanical torsional sensing in photonic crystal split-beam nanocavities University of Calgary, University of Alberta | Publication | 2013-07-01 | M. Wu, A. C. Hryciw, M. R. Freeman, J. P. Davis, P. E. Barclay |
Optomechanical torsional sensing in photonic crystal split-beam nanocavities University of Calgary, University of Alberta | Presentation | 2013-06-12 | M. Wu, H. A. Hryciw, M. R. Freeman, J. P. Davis, P. E. Barclay |
Near-field cavity optomechanical probing of nanomechanics University of Calgary | Presentation | 2013-06-13 | H. A. Hryciw, B. Khanaliloo, M. Wu, C. Healey, P. E. Barclay |
Resonant Wavelength Conversion in Gallium Phosphide Nanostructures University of Calgary | Publication | 2015-05-01 | D. P. Lake, M. Mitchell, A. C. Hryciw, H. Jayakumar, P. E. Barclay |
Optomechanical Nanostructures via Scalable Fabrication in Single-Crystal Diamond University of Calgary | Publication | 2014-06-01 | A. C. Hryciw, B. Khanaliloo, H. Jayakumar, C. Healey, P. E. Barclay |
Near-field cavity optomechanical probing of nanomechanics University of Calgary | Publication | 2013-06-01 | A. C. Hryciw, B. Khanaliloo, M. Wu, C. Healey, P. E. Barclay |
Optomechanical torsional sensing in photonic crystal split-beam nanocavities University of Calgary, University of Alberta | Publication | 2013-06-01 | M. Wu, A. C. Hryciw, M. R. Freeman, J. P. Davis, P. E. Barclay |
Modification of phonon processes in nano-structured rare-earth-ion-doped crystals University of Calgary, The University of Calgary | Publication | 2015-06-01 | T. Lutz, L. Veissier, C. W. Thiel, R. L. Cone, P. E. Barclay, W. Tittel |
An upper limit on the lateral vacancy diffusion length in diamond University of Calgary | Publication | 2012-04-01 | J. O. Orwa, K. Ganesan, J. Newnham, C. M. Santori, P. E. Barclay, K. M. Fu, R. G. Beausoleil, I. Aharonovich, B. A. Fairchild, P. Olivero, A. D. Greentree, S. Prawer |
Diamonds with a high density of nitrogen-vacancy centers for magnetometry applications University of Calgary | Publication | 2009-09-01 | V. M. Acosta, E. Bauch, M. P. Ledbetter, C. M. Santori, K. -. Fu, P. E. Barclay, R. G. Beausoleil, H. Linget, J. F. Roch, F. Treussart, e. al |
Nanoscale torsional optomechanics University of Alberta, University of Calgary | Publication | 2013-01-01 | P. H. Kim, C. Doolin, B. D. Hauer, A. J. MacDonald, M. R. Freeman, P. E. Barclay, J. P. Davis |
Photonic crystal paddle nanocavities for optomechanical torsion sensing University of Calgary, University of Alberta | Publication | 2012-01-01 | M. Wu, A. C. Hryciw, B. Khanaliloo, M. R. Freeman, J. P. Davis, P. E. Barclay |
Raman quantum memory based on an ensemble of nitrogen-vacancy centers coupled to a microcavity University of Calgary | Publication | 2014-04-01 | K. Heshami, C. M. Santori, B. Khanaliloo, C. Healey, V. M. Acosta, P. E. Barclay, C. Simon |
Photonic crystal paddle nanocavities for optomechanical torsion sensing University of Calgary, University of Alberta | Publication | 2012-05-01 | M. Wu, A. C. Hryciw, B. Khanaliloo, M. R. Freeman, J. P. Davis, P. E. Barclay |
Nanoscale torsional optomechanics University of Alberta, University of Calgary | Publication | 2013-02-01 | P. H. Kim, C. Doolin, B. D. Hauer, A. J. MacDonald, M. R. Freeman, P. E. Barclay, J. P. Davis |
Photonic crystal paddle nanocavities for optomechanical torsion sensing University of Calgary, University of Alberta | Publication | 2012-06-01 | M. Wu, A. C. Hryciw, B. Khanaliloo, M. R. Freeman, J. P. Davis, P. E. Barclay |
Photonic crystal paddle nanocavities for optomechanical torsion sensingPhotonic crystal nanocavities with suspended central elements suitable for optomechanical detection of torsional forces are designed and fabricated. This ``floating'' low mass nanocavity may be mechanically coupled to nanomagnetic structures. University of Calgary, University of Alberta | Presentation | 2012-05-09 | M. Wu, H. A. Hryciw, B. Khanaliloo, M. R. Freeman, J. P. Davis, P. E. Barclay |
Photonic crystal paddle nanocavities for optomechanical torsion sensing University of Calgary, University of Alberta | Presentation | 2012-06-12 | M. Wu, H. A. Hryciw, B. Khanaliloo, M. R. Freeman, J. P. Davis, P. E. Barclay |
Raman quantum memory based on an ensemble of nitrogen-vacancy centers coupled to a microcavity University of Calgary | Publication | 2014-06-01 | K. Heshami, C. M. Santori, B. Khanaliloo, C. H. C, V. M. Acosta, P. E. Barclay, C. Simon |
Raman optical quantum memory in NV ensembles coupled to a cavity University of Calgary | Publication | 2013-08-01 | K. Heshami, C. Healey, B. Khanaliloo, V. Acosta, C. M. Santori, P. E. Barclay, C. Simon |
Single crystal diamond nanobeam waveguide optomechanics University of Calgary | Publication | 2015-12-29 | B. Khanaliloo, H. Jayakumar, A. C. Hryciw, D. P. Lake, H. Kaviani, P. E. Barclay |
Nonlinear optomechanical paddle nanocavities University of Calgary | Publication | 2015-03-01 | H. Kaviani, C. Healey, M. Wu, R. Ghobadi, A. Hryciw, P. E. Barclay |
Raman quantum memory based on an ensemble of nitrogen-vacancy centers coupled to amicrocavity University of Calgary | Publication | 2014-02-01 | K. Heshami, C. M. Santori, B. Khanaliloo, C. Healey, V. M. Acosta, P. E. Barclay, C. Simon |
Efficient telecom to visible wavelength conversion in doubly resonant gallium phosphide microdisks University of Calgary | Publication | 2016-12-10 | D. P. Lake, M. Mitchell, H. Jayakumar, L. s. Santos, D. Curic, P. E. Barclay |
Photonic crystal split-beam nanocavities for torsional optomechanics University of Calgary, University of Alberta | Publication | 2013-03-01 | M. Wu, A. C. Hryciw, B. Khanaliloo, C. Healey, M. R. Freeman, J. P. Davis, P. E. Barclay |
Photonic crystal paddle nanocavities for optomechanical torsion sensing University of Calgary, University of Alberta | Presentation | 2012-07-24 | M. Wu, H. A. Hryciw, B. Khanaliloo, C. Healey, M. R. Freeman, J. P. Davis, P. E. Barclay |
Photonic crystal split-beam nanocavities for torsional optomechanics University of Calgary, University of Alberta | Presentation | 2013-02-07 | M. Wu, H. A. Hryciw, B. Khanaliloo, C. Healey, M. R. Freeman, J. P. Davis, P. E. Barclay |
Photonic crystal split-beam nanocavities for torsional optomechanics University of Calgary, University of Alberta | Publication | 2013-03-01 | M. Wu, A. C. Hryciw, B. Khanaliloo, C. Healey, M. R. Freeman, J. P. Davis, P. E. Barclay |
Photonic crystal paddle nanocavities for optomechanical torsion sensing University of Calgary, University of Alberta | Publication | 2012-07-01 | M. Wu, A. C. Hryciw, B. Khanaliloo, C. Healey, M. R. Freeman, J. P. Davis, P. E. Barclay |
Dissipative and Dispersive Optomechanics in a Nanocavity Torque Sensor University of Calgary, University of Alberta | Publication | 2014-06-01 | M. Wu, A. C. Hryciw, C. Healey, D. P. Lake, H. Jayakumar, M. R. Freeman, J. P. Davis, P. E. Barclay |
Visible to infrared diamond photonics enabled by focused femtosecond laser pulsesDiamond's nitrogen-vacancy (NV) centers show great promise in sensing applications and quantum computing due to their long electron spin coherence time and because they can be found, manipulated, and read out optically. An important step forward for diamond photonics would be connecting multiple diamond NVs together using optical waveguides. However, the inertness of diamond is a significant hurdle for the fabrication of integrated optics similar to those that revolutionized silicon photonics. In this work, we show the fabrication of optical waveguides in diamond, enabled by focused femtosecond high repetition rate laser pulses. By optimizing the geometry of the waveguide, we obtain single mode waveguides from the visible to the infrared. Additionally, we show the laser writing of individual NV centers within the bulk of diamond. We use μ-Raman spectroscopy to gain better insight on the stress and the refractive index profile of the optical waveguides. Using optically detected magnetic resonance and confocal photoluminescence characterization, high quality NV properties are observed in waveguides formed in various grades of diamond, making them promising for applications such as magnetometry, quantum information systems, and evanescent field sensors. University of Calgary | Publication | 2017-01-01 | B. Sotillo, V. Bharadwaj, J. Hadden, S. Rampini, A. Chiappini, T. T. Fernandez, C. Armellini, A. Serpengüzel, M. Ferrari, P. E. Barclay, R. Ramponi, S. M. Eaton |