Quantum Institute for Light and Atoms, State Key Laboratory of Precision Spectroscopy, Department of Physics, East China Normal University, Shanghai 200241, China.
B2 Institute, Department of Physics and College of Optical Sciences, University of Arizona, Tucson, Arizona 85721, USA.
Phys Rev Lett. 2015 Mar 20;114(11):113601. doi: 10.1103/PhysRevLett.114.113601. Epub 2015 Mar 16.
Because of their low energy content, microwave signals at the single-photon level are extremely challenging to measure. Guided by recent progress in single-photon optomechanics and hybrid optomechanical systems, we propose a multimode optomechanical transducer that can detect intensities significantly below the single-photon level via adiabatic transfer of the microwave signal to the optical frequency domain where the measurement is then performed. The influence of intrinsic quantum and thermal fluctuations is also discussed.
由于能量含量低,单光子级别的微波信号极难测量。受单光子光机械学和混合光机械系统近期进展的启发,我们提出了一种多模光机械换能器,通过将微波信号绝热转移到光学频率域来探测强度显著低于单光子水平的信号,然后在该频率域进行测量。我们还讨论了固有量子和热涨落的影响。