Affiliation:
1. Shanxi University
2. Shanxi Vocational University of Engineering Science and Technology
3. Taiyuan Normal University
Abstract
High-precision cavity locking is crucial for squeezing optical fields. Here, a bootstrapped low-noise photodetector is utilized in the generation process of the squeezed state of light. This process is based on a combination of a modified trans-impedance amplifier (TIA) circuit and a two-stage bootstrap amplifier circuit. This not only achieves high-precision and long-term stable locking of the optical cavity, but it also improves the degree to which the light field is squeezed. The experiment results show that the detector has a high signal-to-noise ratio (SNR) of 26.7 dB at the analysis frequency of 3 MHz when measuring the shot noise with an injection optical power of 800 µW, and the equivalent optical power noise level is lower than 2.4
pW
/
Hz
in the frequency range of 1–30 MHz. Moreover, the squeezing degree of the quadrature amplitude squeezed state light field can be improved by more than 34.9% when the detector is used for optical cavity locking. The photodetector is useful in continuous variable (CV) quantum information research.
Funder
National Natural Science Foundation of China
National Outstanding Youth Foundation of China
Fund for Shanxi Key Subjects Construction, “1131” Project Key Subjects
Scientific and Technological Innovation Programs of Higher Education Institutions in Shanxi
Natural Science Foundation of Shanxi Province
Program for the Outstanding Innovative Teams of Higher Learning Institutions of Shanxi
Program for Sanjin Scholars of Shanxi Province
China National Funds for Distinguished Young Scientists
Subject
Atomic and Molecular Physics, and Optics
Cited by
4 articles.
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