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典型文献
Quantum prospects for hybrid thin-film lithium niobate on silicon photonics
文献摘要:
Photonics is poised to play a unique role in quantum technology for computation,communications and sensing.Meanwhile,integrated photonic circuits—with their intrinsic phase stability and high-performance,nanoscale components—offer a route to scaling.However,each integrated platform has a unique set of advantages and pitfalls,which can limit their power.So far,the most advanced demonstrations of quantum photonic circuitry has been in silicon photonics.However,thin-film lithium niobate(TFLN)is emerging as a powerful platform with unique capabilities;advances in fabrication have yielded loss metrics competitive with any integrated photonics platform,while its large second-order nonlinearity provides efficient nonlinear processing and ultra-fast modulation.In this short review,we explore the prospects of dynamic quantum circuits—such as multiplexed photon sources and entanglement generation—on hybrid TFLN on silicon(TFLN/Si)photonics and argue that hybrid TFLN/Si photonics may have the capability to deliver the photonic quantum technology of tomorrow.
文献关键词:
作者姓名:
Jeremy C.Adcock;Yunhong Ding
作者机构:
Center for Silicon Photonics for Optical Communication,Technical University of Denmark,2800 Kgs.Lyngby,Denmark
引用格式:
[1]Jeremy C.Adcock;Yunhong Ding-.Quantum prospects for hybrid thin-film lithium niobate on silicon photonics)[J].光电子前沿(英文版),2022(01):73-79
A类:
B类:
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AB值:
0.596458
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