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Photonic molecules are composed of two or more optical resonators, arranged such that some of the modes of each resonator are coupled to those of the other.
R. J. C. Spreeuw, N. J. Van Druten, M. W. Beijersbergen, E. R. Eliel, and J. P. Woerdman, Classical realization of a strongly driven two-level system, Physical Review Letters 65
1990
Earlier work this paper cites.
M. E. Anderson, M. Beck, M. G. Raymer, and J. D. Bierlein, Quadrature squeezing with ultrashort pulses in nonlinear-optical waveguides, Optics Letters 20
1995
Earlier work this paper cites.
M. G. A. Paris, F. Illuminati, A. Serafini, and S. De Siena, Purity of gaussian states: Measurement schemes and time evolution in noisy channels, Physical Review A 68
2003
Earlier work this paper cites.
T. Aoki, G. Takahashi, and A. Furusawa, Squeezing at 946nm with periodically poled ktiopo 4, Optics Express 14
2006
Earlier work this paper cites.
N. A. R. Bhat and J. E. Sipe, Hamiltonian treatment of the electromagnetic field in dispersive and absorptive structured media, Physical Review A 73
2006
Earlier work this paper cites.
C. Weedbrook, S. Pirandola, R. García-Patrón, N. J. Cerf, T. C. Ralph, J. H. Shapiro, and S. Lloyd, Gaussian quantum information, Reviews of Modern Physics 84
2012
Earlier work this paper cites.
S. Azzini, D. Grassani, M. J. Strain, M. Sorel, L. G. Helt, J. E. Sipe, M. Liscidini, M. Galli, and D. Bajoni, Ultra-low power generation of twin photons in a compact silicon ring resonator, Optics Express 20
2012
Earlier work this paper cites.
I. Agha, M. Davanço, B. Thurston, and K. Srinivasan, Low-noise chip-based frequency conversion by four-wave-mixing bragg scattering in SiN x
2012
Earlier work this paper cites.
M. Liscidini, L. G. Helt, and J. E. Sipe, Asymptotic fields for a hamiltonian treatment of nonlinear electromagnetic phenomena, Physical Review A 85
2012
Earlier work this paper cites.
T. Grossmann, T. Wienhold, U. Bog, T. Beck, C. Friedmann, H. Kalt, and T. Mappes, Polymeric photonic molecule super-mode lasers on silicon, Light: Science & Applications 2
2013
Earlier work this paper cites.
A. H. Safavi-Naeini, S. Gröblacher, J. T. Hill, J. Chan, M. Aspelmeyer, and O. Painter, Squeezed light from a silicon micromechanical resonator, Nature 500
2013
Earlier work this paper cites.
S. Ast, M. Mehmet, and R. Schnabel, High-bandwidth squeezed light at 1550 nm from a compact monolithic ppktp cavity, Optics Express 21
2013
Earlier work this paper cites.
C. M. Gentry, X. Zeng, and M. A. Popović, Tunable coupled-mode dispersion compensation and its application to on-chip resonant four-wave mixing, Optics Letters 39
2014
Cited alongside, same era.
Y. Guo, W. Zhang, S. Dong, Y. Huang, and J. Peng, Telecom-band degenerate-frequency photon pair generation in silicon microring cavities, Optics Letters 39
2014
Cited alongside, same era.
A. I. Lvovsky, Squeezed light, Photonics: Scientific Foundations, Technology and Applications 1
2015
Cited alongside, same era.
J. Huh, G. G. Guerreschi, B. Peropadre, J. R. McClean, and A. Aspuru-Guzik, Boson sampling for molecular vibronic spectra, Nature Photonics 9
2015
Cited alongside, same era.
A. Dutt, K. Luke, S. Manipatruni, A. L. Gaeta, P. Nussenzveig, and M. Lipson, On-chip optical squeezing, Physical Review Applied 3
2015
Cited alongside, same era.
M. Zhang, C. Wang, Y. Hu, A. Shams-Ansari, T. Ren, S. Fan, and M. Lončar, Electronically programmable photonic molecule, Nature Photonics 13
2019
Later among the works it cites.
M. Heuck, J. G. Koefoed, J. B. Christensen, Y. Ding, L. H. Frandsen, K. Rottwitt, and L. K. Oxenløwe, Unidirectional frequency conversion in microring resonators for on-chip frequency-multiplexed single-photon sources, New Journal of Physics 21
2019
Later among the works it cites.
M. Tse et al. , Quantum-enhanced advanced LIGO detectors in the era of gravitational-wave astronomy, Physical Review Letters 123
2019
Later among the works it cites.
A. Otterpohl, F. Sedlmeir, U. Vogl, T. Dirmeier, G. Shafiee, G. Schunk, D. V. Strekalov, H. G. L. Schwefel, T. Gehring, U. L. Andersen, G. Leuchs, and C. Marquardt, Squeezed vacuum states from a whispering gallery mode resonator, Optica 6
2019
Later among the works it cites.
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A. Dutt, S. Miller, K. Luke, J. Cardenas, A. L. Gaeta, P. Nussenzveig, and M. Lipson, Tunable squeezing using coupled ring resonators on a silicon nitride chip, Optics Letters 41
2016
Cited alongside, same era.
H. Vahlbruch, M. Mehmet, K. Danzmann, and R. Schnabel, Detection of 15 db squeezed states of light and their application for the absolute calibration of photoelectric quantum efficiency, Physical Review Letters 117
2016
Cited alongside, same era.
L. G. Helt, A. M. Brańczyk, M. Liscidini, and M. J. Steel, Parasitic photon-pair suppression via photonic stop-band engineering, Physical Review Letters 118
2017
Cited alongside, same era.
L. Neuhaus, R. Metzdorff, S. Chua, T. Jacqmin, T. Briant, A. Heidmann, P.-F. Cohadon, and S. Deléglise, PyRPL (Python Red Pitaya Lockbox)-an open-source software package for FPGA-controlled quantum optics experiments, in European Quantum Electronics Conference (Optical Society of America, 2017) p. EA_P_8
2017
Cited alongside, same era.
J. M. Arrazola and T. R. Bromley, Using Gaussian boson sampling to find dense subgraphs, Physical Review Letters 121
2018
Cited alongside, same era.
X. Qiang, X. Zhou, J. Wang, C. M. Wilkes, T. Loke, S. O’Gara, L. Kling, G. D. Marshall, R. Santagati, T. C. Ralph, J. B. Wang, J. L. O’Brien, M. G. Thompson, and J. C. F. Matthews, Large-scale silicon quantum photonics implementing arbitrary two-qubit processing, Nature Photonics 12
2018
Cited alongside, same era.
K. Fukui, A. Tomita, A. Okamoto, and K. Fujii, High-threshold fault-tolerant quantum computation with analog quantum error correction, Physical Review X 8
2018
Cited alongside, same era.
F. Mondain, T. Lunghi, A. Zavatta, E. Gouzien, F. Doutre, M. De Micheli, S. Tanzilli, and V. D’Auria, Chip-based squeezing at a telecom wavelength, Photonics Research 7
2019
Later among the works it cites.
2019
Later among the works it cites.
G. Huang, E. Lucas, J. Liu, A. S. Raja, G. Lihachev, M. L. Gorodetsky, N. J. Engelsen, and T. J. Kippenberg, Thermorefractive noise in silicon-nitride microresonators, Physical Review A 99
2019
Later among the works it cites.
Z. Vernon, N. Quesada, M. Liscidini, B. Morrison, M. Menotti, K. Tan, and J. E. Sipe, Scalable squeezed-light source for continuous-variable quantum sampling, Physical Review Applied 12
2019
Later among the works it cites.
T. R. Bromley, J. M. Arrazola, S. Jahangiri, J. Izaac, N. Quesada, A. D. Gran, M. Schuld, J. Swinarton, Z. Zabaneh, and N. Killoran, Applications of near-term photonic quantum computers: Software and algorithms, Quantum Science and Technology 5
2020
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V. D. Vaidya, B. Morrison, L. G. Helt, R. Shahrokshahi, D. H. Mahler, M. J. Collins, K. Tan, J. Lavoie, A. Repingon, M. Menotti, N. Quesada, R. C. Pooser, A. E. Lita, T. Gerrits, S. W. Nam, and Z. Vernon, Broadband quadrature-squeezed vacuum and nonclassical photon number correlations from a nanophotonic device, Science Advances 6
2020
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Y. Zhao, Y. Okawachi, J. K. Jang, X. Ji, M. Lipson, and A. L. Gaeta, Near-degenerate quadrature-squeezed vacuum generation on a silicon-nitride chip, Physical Review Letters 124
2020
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