An Integrated-Photonics Optical-Frequency Synthesizer
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[1] Jacob M. Taylor,et al. Quantum correlations from a room-temperature optomechanical cavity , 2017, Science.
[2] L. Maleki,et al. Power-Efficient Kerr Frequency Comb Based Tunable Optical Source , 2017, IEEE Photonics Journal.
[3] Erwan Lucas,et al. Octave-spanning dissipative Kerr soliton frequency combs in Si 3 N 4 microresonators , 2017, 1701.08594.
[4] Qing Li,et al. Stably accessing octave-spanning microresonator frequency combs in the soliton regime. , 2016, Optica.
[5] H. Tang,et al. Second-harmonic generation in aluminum nitride microrings with 2500%/W conversion efficiency , 2016 .
[6] S. Diddams,et al. Soliton crystals in Kerr resonators , 2016, 1610.00080.
[7] J. Bowers,et al. Integrated chip-scale Si3N4 wavemeter with narrow free spectral range and high stability. , 2016, Optics letters.
[8] K. Vahala,et al. Phase-coherent microwave-to-optical link with a self-referenced microcomb , 2016, Nature Photonics.
[9] John E. Bowers,et al. Thin film wavelength converters for photonic integrated circuits , 2016 .
[10] A. Weiner,et al. Microwave photonics connected with microresonator frequency combs , 2016 .
[11] Kerry J. Vahala,et al. Soliton frequency comb at microwave rates in a high-Q silica microresonator , 2015 .
[12] Jean-Daniel Deschênes,et al. A compact optically coherent fiber frequency comb , 2015 .
[13] K. Vahala,et al. Broadband dispersion-engineered microresonator on a chip , 2015, Nature Photonics.
[14] G. Fish,et al. Widely Tunable Narrow-Linewidth Monolithically Integrated External-Cavity Semiconductor Lasers , 2015, IEEE Journal of Selected Topics in Quantum Electronics.
[15] T. Kippenberg,et al. Counting the Cycles of Light using a Self-Referenced Optical Microresonator , 2014, 1411.1354.
[16] V. Brasch,et al. Photonic chip–based optical frequency comb using soliton Cherenkov radiation , 2014, Science.
[17] M. Lipson,et al. Bandwidth shaping of microresonator-based frequency combs via dispersion engineering. , 2014, Optics letters.
[18] Qi Li,et al. Silicon Photonics for Exascale Systems , 2014, Journal of Lightwave Technology.
[19] K. Vahala,et al. Microresonator frequency comb optical clock , 2013, 1309.3525.
[20] J. Bowers,et al. Hybrid Silicon Photonic Integrated Circuit Technology , 2013, IEEE Journal of Selected Topics in Quantum Electronics.
[21] S. Diddams,et al. Hybrid electro-optically modulated microcombs. , 2012, Physical review letters.
[22] T. Sylvestre,et al. Modeling of octave-spanning Kerr frequency combs using a generalized mean-field Lugiato-Lefever model. , 2012, Optics letters.
[23] M. Gorodetsky,et al. Temporal solitons in optical microresonators , 2012, Nature Photonics.
[24] Hansuek Lee,et al. Low-pump-power, low-phase-noise, and microwave to millimeter-wave repetition rate operation in microcombs. , 2012, Physical review letters.
[25] M. Gorodetsky,et al. Universal formation dynamics and noise of Kerr-frequency combs in microresonators , 2012, Nature Photonics.
[26] T. Kippenberg,et al. Microresonator based optical frequency combs , 2012, 2012 Conference on Lasers and Electro-Optics (CLEO).
[27] S. Osterman,et al. Generation of a 660-2100 nm laser frequency comb based on an erbium fiber laser. , 2012, Optics Letters.
[28] Scott A. Diddams,et al. Spectral and temporal characterization of a fused-quartz-microresonator optical frequency comb , 2011, 1106.2487.
[29] A. Weiner,et al. Spectral line-by-line pulse shaping of an on-chip microresonator frequency comb , 2011, CLEO: 2011 - Laser Science to Photonic Applications.
[30] Esther Baumann,et al. Fast high-resolution spectroscopy of dynamic continuous-wave laser sources , 2010 .
[31] J. Rarity,et al. Photonic quantum technologies , 2009, 1003.3928.
[32] Lute Maleki,et al. Generation of optical frequency combs with a CaF2 resonator. , 2009, Optics letters.
[33] T. Hänsch,et al. Laser Frequency Combs for Astronomical Observations , 2008, Science.
[34] A. Matsko,et al. Tunable optical frequency comb with a crystalline whispering gallery mode resonator. , 2008, Physical review letters.
[35] T. Kippenberg,et al. Full stabilization of a microresonator-based optical frequency comb. , 2008, Physical review letters.
[36] T. Kippenberg,et al. Optical frequency comb generation from a monolithic microresonator , 2007, Nature.
[37] T. Hänsch. Nobel Lecture: Passion for precision* , 2006 .
[38] John L. Hall,et al. Nobel Lecture: Defining and measuring optical frequencies , 2006 .
[39] H Matsumoto,et al. Phase-locked widely tunable optical single-frequency generator based on a femtosecond comb. , 2005, Optics letters.
[40] Jun Ye,et al. Continuously tunable, precise, single frequency optical signal generator. , 2002, Optics express.
[41] E. A. Curtis,et al. An Optical Clock Based on a Single Trapped 199Hg+ Ion , 2001, Science.
[42] Alan Y. Liu,et al. Heterogeneous Silicon Photonic Integrated Circuits , 2016, Journal of Lightwave Technology.
[43] Roberto Morandotti,et al. CMOS-compatible integrated optical hyper-parametric oscillator , 2010 .
[44] Michal Lipson,et al. CMOS-compatible multiple-wavelength oscillator for on-chip optical interconnects , 2010 .
[45] Jun Ye,et al. References and Notes Supporting Online Material Broadband Cavity Ringdown Spectroscopy for Sensitive and Rapid Molecular Detection , 2022 .