Durán Gómez J S S, Ramírez Alarcón R, Gómez Robles M, Tavares Ramírez P M C, Rodríguez Becerra G J, Ortíz-Ricardo E, Salas-Montiel R
Opt Lett. 2024 Apr 1;49(7):1860-1863. doi: 10.1364/OL.519784.
We report the design of an integrated photon pair source based on spontaneous four-wave mixing (SFWM), implemented in an integrated micro-ring resonator in the silicon nitride platform (SiN). The signal photon is generated with emission at 606 nm and bandwidth of 3.98 MHz, matching the spectral properties of praseodymium ions (Pr), while the idler photon is generated at 1430.5 nm matching the wavelength of a CWDM channel in the E-band. This novel, to the best of our knowledge, device is designed to interact with a quantum memory based on a YSiO crystal doped with Pr ions, in which we used cavity-enhanced SFWM along with dispersion engineering to reach the required wavelength and the few megahertz signal photon spectral bandwidth.
我们报告了一种基于自发四波混频(SFWM)的集成光子对源的设计,该设计在氮化硅平台(SiN)的集成微环谐振器中实现。信号光子在606 nm处发射,带宽为3.98 MHz,与镨离子(Pr)的光谱特性相匹配,而闲频光子在1430.5 nm处产生,与E波段的一个粗波分复用(CWDM)通道的波长相匹配。据我们所知,这种新颖的器件旨在与基于掺杂Pr离子的YSio晶体的量子存储器相互作用,在该量子存储器中,我们利用腔增强SFWM以及色散工程来达到所需的波长和几兆赫兹的信号光子光谱带宽。