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相关论文: Spontaneous four-wave mixing in lossy microring re…

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We present a detailed analysis of strongly driven spontaneous four-wave mixing in a lossy integrated microring resonator side-coupled to a channel waveguide. A nonperturbative, analytic solution within the undepleted pump approximation is…

量子物理 · 物理学 2015-10-28 Z. Vernon , J. E. Sipe

We model backscatter for electric fields propagating through optical micro-ring resonators, as occurring both in-ring and in-coupler. These provide useful tools for modelling transmission and in-ring fields in these optical devices. We then…

量子物理 · 物理学 2021-04-12 Jonte R. Hance , Gary F. Sinclair , John Rarity

Composite optical systems can show compelling collective dynamics. For instance, the cooperative decay of quantum emitters into a common radiation mode can lead to superradiance, where the emission rate of the ensemble is larger than the…

We consider integrated photon pair sources based on spontaneous four-wave mixing and derive expressions for the pump powers at which various nonlinear processes become relevant for a variety of source materials and structures. These…

量子物理 · 物理学 2013-08-15 L. G. Helt , M. J. Steel , J. E. Sipe

We investigate spontaneous four wave mixing (SFWM) in a single-channel side-coupled integrated spaced sequence of resonators (SCISSOR). Analytic expressions for the number of photon pairs generated, as well as the biphoton wave function…

量子物理 · 物理学 2016-04-27 T. Onodera , Marco Liscidini , J. E. Sipe , L. G. Helt

We present the optimal design for an on-chip single-photon source based on spontaneous four-wave mixing in a system of coupled ring microresonators, which provides frequency uncorrelated joint spectral amplitude of the biphoton field and…

量子物理 · 物理学 2018-09-11 I. N. Chuprina , N. S. Perminov , D. Yu. Tarankova , A. A. Kalachev

We experimentally demonstrate stimulated four-wave mixing in two linearly uncoupled integrated Si$_3$N$_4$ micro-resonators. In our structure the resonance combs of each resonator can be tuned independently, with the energy transfer from…

光学 · 物理学 2020-03-18 K. Tan , M. Menotti , Z. Vernon , J. E. Sipe , M. Liscidini , B. Morrison

We report on four-wave mixing in a silicon microring resonator using a self-pumping scheme instead of an external laser. The ring resonator is inserted in an external-loop cavity with a fibered semiconductor amplifier as a source of gain.…

量子物理 · 物理学 2018-09-21 M. Previde Massara , F. A. Sabattoli , F. Pirzio , M. Galli , D. Bajoni

Compact silicon integrated devices, such as micro-ring resonators, have recently been demonstrated as efficient sources of quantum correlated photon pairs. The mass production of integrated devices demands the implementation of fast and…

We develop a non-perturbative description of squeezed light generation in an arbitrary lossy structure consisting of multiple coupled microring resonators. This is applied to two ring photonic molecules where the interference of the fields…

量子物理 · 物理学 2026-05-12 M. Sloan , J. E. Sipe

Using a general Hamiltonian treatment, we theoretically study the generation of degenerate quadrature squeezing in a dual-pumped integrated microring resonator coupled to a waveguide. Considering a dual-pump four-wave mixing configuration…

量子物理 · 物理学 2022-04-06 Hossein Seifoory , Zachary Vernon , Dylan Mahler , Matteo Menotti , Young Zhang , John E. Sipe

We present a detailed study of the generation of photon pairs by spontaneous four-wave mixing in a structure composed of two linearly uncoupled resonators, where energy can be transferred from one resonator to another only through a…

量子物理 · 物理学 2023-01-23 Luca Zatti , J. E. Sipe , Marco Liscidini

We present two complementary strategies for modeling nonlinear quantum optics in realistic integrated optical devices, where scattering loss is present. In the first strategy, we model scattering loss as an attenuation; in the second, we…

量子物理 · 物理学 2022-10-19 Milica Banic , Luca Zatti , Marco Liscidini , J. E. Sipe

We present a general model, based on a Hamiltonian approach, for the joint quantum state of photon pairs generated through pulsed spontaneous four-wave mixing, including nonlinear phase-modulation and a finite material response time. For…

量子物理 · 物理学 2017-05-03 Jacob G. Koefoed , Jesper B. Christensen , Karsten Rottwitt

We propose a dual-pump third-order nonlinear scheme for producing pairs of correlated photons that is less susceptible to Raman noise than typical spontaneous four wave mixing methods (SFWM). Beginning with the full multimode Hamiltonian we…

量子物理 · 物理学 2016-10-20 Daniel R. Blay , L. G. Helt , M. J. Steel

We describe a method for non-degenerate four-wave mixing in a cold sample of 4-level atoms. An integral part of the four-wave mixing process is a collective instability which spontaneously generates a periodic density modulation in the cold…

量子物理 · 物理学 2016-09-08 G. R. M. Robb , B. W. J. McNeil

We consider the effect of self-phase modulation and cross-phase modulation on the joint spectral amplitude of photon pairs generated by spontaneous four-wave mixing. In particular, the purity of a heralded photon from a pair is considered,…

量子物理 · 物理学 2015-11-25 Bryn Bell , Alex McMillan , Will McCutcheon , John Rarity

We present a self-contained analytical model for biphoton generation in microring resonators. Encompassing both all-pass and add-drop geometries, identical and distinct pump and biphoton coupling coefficients, and continuous-wave and pulsed…

量子物理 · 物理学 2025-11-19 Joseph M. Lukens , Karthik V. Myilswamy , Alexander Miloshevsky , Hsuan-Hao Lu

Four-wave mixing can be stimulated or occur spontaneously. The first process is intrinsically much stronger, and well understood through classical nonlinear optics. The latter, also known as parametric fluorescence, can be explained only in…

The intensity buildup of light inside a lossy microring resonator can be used to enhance the generation of squeezed states via spontaneous parametric downconversion (SPDC). In this work, we model the generation of squeezed light in a…

光学 · 物理学 2020-08-19 Colin Vendromin , Marc M. Dignam
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