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Intermodal four-wave mixing in silicon waveguides 被引量:7
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作者 STEFANO SIGNORINI MATTIA MANCINELLI +4 位作者 MASSIMO BORGHI martino bernard MHER GHULINYAN GEORG PUCKER LORENZO PAVESI 《Photonics Research》 SCIE EI 2018年第8期805-814,共10页
In this work, we report the modeling and the experimental demonstration of intermodal spontaneous as well as stimulated four-wave mixing(FWM) in silicon waveguides. In intermodal FWM, the phase-matching condition is a... In this work, we report the modeling and the experimental demonstration of intermodal spontaneous as well as stimulated four-wave mixing(FWM) in silicon waveguides. In intermodal FWM, the phase-matching condition is achieved by exploiting the different dispersion profiles of the optical modes in a multimode waveguide. Since both the energy and the wave vectors have to be conserved in the FWM process, this leads to a wide tunability of the generated photon wavelength, allowing us to achieve a large spectral conversion. We measured several waveguides that differ by their widths and demonstrate large signal generation spanning from the pump wavelength(1550 nm) down to 1202 nm. A suited setup evidences that the different waves propagated indeed on different order modes, which supports the modeling. Despite observing a reduced efficiency with respect to intramodal FWM due to the decreased modal overlap, we were able to show a maximum spectral distance between the signal and idler of 979.6 nm with a 1550 nm pump. Our measurements suggest the intermodal FWM is a viable means for large wavelength conversion and heralded photon sources. 展开更多
关键词 四波混频 通讯技术 发展现状 技术创新
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Complete crossing of Fano resonances in an optical microcavity via nonlinear tuning 被引量:1
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作者 martino bernard FERNANDO RAMIRO MANZANO +3 位作者 LORENZO PAVESI GEORG PUCKER IACOPO CARUSOTTO MHER GHULINYAN 《Photonics Research》 SCIE EI 2017年第3期168-175,共8页
We report on the modeling, simulation, and experimental demonstration of complete mode crossings of Fano resonances within chip-integrated microresonators. The continuous reshaping of resonant line shapes is achieved ... We report on the modeling, simulation, and experimental demonstration of complete mode crossings of Fano resonances within chip-integrated microresonators. The continuous reshaping of resonant line shapes is achieved via nonlinear thermo-optical tuning when the cavity-coupled optical pump is partially absorbed by the material.The locally generated heat then produces a thermal field, which influences the spatially overlapping optical modes, allowing us to alter the relative spectral separation of resonances. Furthermore, we exploit such tunability to continuously probe the coupling between different families of quasi-degenerate modes that exhibit asymmetric Fano interactions. As a particular case, we demonstrate a complete disappearance of one of the modal features in the transmission spectrum as predicted by Fano [Phys. Rev. 124, 1866(1961)]. The phenomenon is modeled as a third-order nonlinearity with a spatial distribution that depends on the stored optical field and thermal diffusion within the resonator. The performed nonlinear numerical simulations are in excellent agreement with the experimental results, which confirm the validity of the developed theory. 展开更多
关键词 in on of Complete crossing of Fano resonances in an optical microcavity via nonlinear tuning MODE been that IS
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Generation of quantum-certified random numbers using on-chip path-entangled single photons from an LED
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作者 NICOLÒ LEONE STEFANO AZZINI +7 位作者 SONIA MAZZUCCHI VALTER MORETTI MATTEO SANNA MASSIMO BORGHI GIOELE PICCOLI martino bernard MHER GHULINYAN LORENZO PAVESI 《Photonics Research》 SCIE EI CAS CSCD 2023年第9期1484-1499,共16页
Single-photon entanglement is a peculiar type of entanglement in which two or more degrees of freedom of a single photon are correlated quantum-mechanically. Here, we demonstrate a photonic integrated chip able to gen... Single-photon entanglement is a peculiar type of entanglement in which two or more degrees of freedom of a single photon are correlated quantum-mechanically. Here, we demonstrate a photonic integrated chip able to generate and manipulate single-photon path-entangled states, using a commercial red LED as light source.A Bell test, in the Clauser, Horne, Shimony, and Holt(CHSH) form, is performed to confirm the presence of entanglement, resulting in a maximum value of the CHSH correlation parameter equal to 2.605 ± 0.004.This allows us to use it as an integrated semi-device independent quantum random number generator able to produce certified random numbers. The certification scheme is based on a Bell’s inequality violation and on a partial characterization of the experimental setup, without the need of introducing any further assumptions either on the input state or on the particular form of the measurement observables. In the end a min-entropy of 33% is demonstrated. 展开更多
关键词 QUANTUM RANDOM INEQUALITY
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