论文标题

利用稀土铝硅酸盐玻璃微管进行光电机电量子转导的稀土铝硅酸盐玻璃微管的相互作用

Harnessing Brillouin Interaction in Rare-earth Aluminosilicate Glass Microwires for Optoelectromechanic Quantum Transduction

论文作者

Majumdar, Mrittunjoy Guha, Chandrashekar, C. M.

论文摘要

量子转导,将量子信号从一种形式的能量转换为另一种形式的过程是利用不同的物理平台和相关量子台的关键步骤,用于量子信息处理。光电机力学一直是从光学到微波信号进行转导的有效方法之一,例如使用原子集合,集体磁性旋转兴奋,压电性和电力学谐振器,使用硅氮化物膜。使用硝酸硅纳米膜中光电力学方法中光子转化率损失损失的关键领域之一是电磁转化率中的纳米膜。为了解决这个问题,我们建议在纤维模式下使用布里鲁因相互作用,该纤维模式可以通过稀土铝制玻璃微管中的纤维锥度传递。这表明我们可以在Brillouin Itestootions的帮助下有效地将$ 195.57的$ THZ光学信号转换为$ 325.08 $ MHz微波炉信号,而窃窃私语的Brillouin散射模式产生了$ \ sim45 $ \%的转换效率。

Quantum transduction, the process of converting quantum signals from one form of energy to another is a key step in harnessing different physical platforms and the associated qubits for quantum information processing. Optoelectromechanics has been one of the effective approaches to undertake transduction from optical-to-microwave signals, among others such as those using atomic ensembles, collective magnetostatic spin excitations, piezoelectricity and electro-optomechanical resonator using Silicon nitride membrane. One of the key areas of loss of photon conversion rate in optoelectromechanical method using Silicon nitride nanomembranes has been those in the electro-optic conversion. To address this, we propose the use of Brillouin interactions in a fiber mode that is allowed to be passed through a fiber taper in rare-earth Aluminium glass microwires. It suggests that we can efficiently convert a $195.57$ THz optical signal to a $325.08$ MHz microwave signal with the help of Brillouin interactions, with a whispering stimulated Brillouin scattering mode yielding a conversion efficiency of $\sim45$\%.

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