Programmable Photonic Crystal Nanobeam Cavities References and Links
Programmable Photonic Crystal Nanobeam Cavities References and Links
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I. Frank;P. Deotare;M. Mccutcheon;M. Lončar;S. Song;T. Noda;Y. Asano;Akahane;M. P. B. W. Deotare;I. W. Mccutcheon;M. Frank;M. Khan;M Lončar;K Hennessy;A. Badolato;M. Winger;D. Gerace;M. Atatüre;S. Gulde;S. Fält;E. Hu;A. Imamoǧlu;X Yang;C. J. Chen;C. Husko;C. Wong;A Faraon;D. Englund;D. Bulla;B. Luther-Davies;B. Eggleton;N. Stoltz;P. Petroff;J. Vučković;Local;J Pan;Y. Huo;K. Yamanaka;S. Sandhu;L. Scaccabarozzi;R. Timp;M. Povinelli;S. Fan;M. Fejer;J. Harris;I Märki;M. Salt;H. Herzig;R. Stanley;L. E. Melhaoui;P. Lyan;J. Fedeli;M W Mccutcheon;A. Pattantyus-Abraham;G. Rieger;J. F. Young;S. Mosor;J. Hendrickson;B. C. Richards;J. Sweet;G. Khitrova;H. Gibbs;T. Yoshie;A. Scherer;O. Shchekin;D. Deppe;B Maune;M. Lončar;J. Witzens;M. Hochberg;T. Baehr‐Jones;D. Psaltis;Y. Qiu;A R Md Zain;N. P. Johnson;M. Sorel;R. De;M Eichenfield;R. Camacho;J. Chan;K. Vahala;O. Painter;P Velha;E. Picard;T. Charvolin;E. Hadji;J. Rodier;P. Lalanne;D. Peyrade;Ultra-High;Deotare;M. Mccutcheon;I. Frank;Popovíc;C. Manolatou;M. Watts;R. Camacho;Lee;M. Wu;I. W. Cheung;D. Dalacu;S. Frederick;P. Poole;G. Aers;R. Williams;H Altug;J. Vučković;M Galli;S. Portalupi;M. Belotti;L. Andreani;L. O 'faolain;T. Krauss
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I. Frank;P. Deotare;M. Mccutcheon;M. Lončar;S. Song;T. Noda;Y. Asano;Akahane;M. P. B. W. Deotare;I. W. Mccutcheon;M. Frank;M. Khan;M Lončar;K Hennessy;A. Badolato;M. Winger;D. Gerace;M. Atatüre;S. Gulde;S. Fält;E. Hu;A. Imamoǧlu;X Yang;C. J. Chen;C. Husko;C. Wong;A Faraon;D. Englund;D. Bulla;B. Luther-Davies;B. Eggleton;N. Stoltz;P. Petroff;J. Vučković;Local;J Pan;Y. Huo;K. Yamanaka;S. Sandhu;L. Scaccabarozzi;R. Timp;M. Povinelli;S. Fan;M. Fejer;J. Harris;I Märki;M. Salt;H. Herzig;R. Stanley;L. E. Melhaoui;P. Lyan;J. Fedeli;M W Mccutcheon;A. Pattantyus-Abraham;G. Rieger;J. F. Young;S. Mosor;J. Hendrickson;B. C. Richards;J. Sweet;G. Khitrova;H. Gibbs;T. Yoshie;A. Scherer;O. Shchekin;D. Deppe;B Maune;M. Lončar;J. Witzens;M. Hochberg;T. Baehr‐Jones;D. Psaltis;Y. Qiu;A R Md Zain;N. P. Johnson;M. Sorel;R. De;M Eichenfield;R. Camacho;J. Chan;K. Vahala;O. Painter;P Velha;E. Picard;T. Charvolin;E. Hadji;J. Rodier;P. Lalanne;D. Peyrade;Ultra-High;Deotare;M. Mccutcheon;I. Frank;Popovíc;C. Manolatou;M. Watts;R. Camacho;Lee;M. Wu;I. W. Cheung;D. Dalacu;S. Frederick;P. Poole;G. Aers;R. Williams;H Altug;J. Vučković;M Galli;S. Portalupi;M. Belotti;L. Andreani;L. O 'faolain;T. Krauss
We present dynamically reconfigurable photonic crystal nanobeam cavities, operating at ~1550 nm, that can be continuously and reversibly tuned over a 9.5 nm wavelength range. The devices are formed by two coupled nanobeam cavities, and the tuning is achieved by varying the lateral gap between the nanobeams. An electrostatic force, obtained by applying bias voltages directly to the nanobeams, is used to control the spacing between the nanobeams, which in turn results in tuning of the cavity resonance. The observed tuning trends were confirmed through simulations that modeled the electrostatic actuation as well as the optical resonances in our reconfigurable geometries. High quality factor photonic crystal nanobeam cavities, " Appl. " Quantum nature of a strongly coupled single quantum dot-cavity system, Digital resonance tuning of high-Q/Vm silicon photonic crystal nanocavities by atomic layer deposition, " Appl. tuning of photonic crystal cavities using chalcogenide glasses, " Appl. Aligning microcavity resonances in silicon photonic-crystal slabs using laser-pumped thermal tuning, " Appl. Optically tunable microcavity in a planar photonic crystal silicon waveguide buried in oxide, " Opt. Emission spectrum of electromagnetic energy stored in a dynamically perturbed optical microcavity, " Opt. Scanning a photonic crystal slab nanocavity by condensation of xenon, " Appl.crystal electric tuning of a photonic crystal laser, " Appl. Design of a silicon nitride photonic crystal nanocavity with a Quality factor of one million for coupling to a diamond nanocrystal, " Opt. Rue, " Ultra high quality factor one dimensional photonic crystal/photonic wire micro-cavities in silicon-on-insulator (SOI), " Opt. A picogram-and nanometre-scale photonic-crystal optomechanical cavity, Coupling-induced resonance frequency shifts in coupled dielectric multi-cavity filters, " Opt. Tunable coupling regimes of silicon microdisk resonators using MEMS actuators, " Opt. Resonant scattering and second-harmonic spectroscopy of planar photonic crystal microcavities, " Appl. Polarization control and sensing with two-dimensional coupled photonic crystal microcavity arrays, " Opt. Light scattering and fano resonances in high-q photonic crystal nanocavities, " Appl.