Molecular Vibrational Polaritons Towards Quantum Technologies

Molecular Vibrational Polaritons Towards Quantum Technologies
复制标题

分子振动极化子走向量子技术

DOI:
10.1002/qute.202100163
复制
发表时间:
2022
影响因子:
4.4
通讯作者:
Xiong, Wei
Xiong, Wei
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
Yang, Zimo;Xiong, Wei

文献摘要

相似文献

讨论了分子振动极化子 (MVP)(一种混合分子光子准粒子)以及原理验证量子技术平台的开发,以模拟相干传递,以便在室温下使用。结果表明,MVP 可以在室温下形成量子位、相干性并具有非线性相互作用。还发现了一些新的见解,例如极化子非线性对宏观特性(包括腔厚度和分子浓度)的依赖性。希望这些进展能够刺激更多的研究,将该系统开发成不受低温条件要求限制的量子技术平台。
Molecular vibrational polaritons (MVPs)—a hybrid molecular‐photon quasiparticle—and the development of a proof‐of‐principle quantum technology platform are discussed to simulate coherence transfer, for use at room temperature. It is shown that MVPs can form qubits, coherence, and have nonlinear interactions, all at room temperature. Some new insights, such as polaritonic nonlinearity dependence on macroscopic properties including cavity thickness and molecular concentrations are also uncovered. It is hoped that these advances can stimulate more research in developing this system into a quantum technology platform free from the constraints imposed by the requirement of cryogenic conditions.