Cite this article:
Jian-Feng Tian, Guan-Hua Zuo, Yu-Chi Zhang, Gang Li, Peng-Fei Zhang, Tian-Cai Zhang. Generation of squeezed vacuum on cesium D2 line down to kilohertz rangeJ. Chin. Phys. B, 2017, 26(12): 124206.
| Jian-Feng Tian, Guan-Hua Zuo, Yu-Chi Zhang, Gang Li, Peng-Fei Zhang, Tian-Cai Zhang. Generation of squeezed vacuum on cesium D2 line down to kilohertz rangeJ. Chin. Phys. B, 2017, 26(12): 124206. |
Generation of squeezed vacuum on cesium D2 line down to kilohertz range
-
Abstract
We report the experimental generation of a squeezed vacuum at frequencies ranging from 2.5 kHz to 200 kHz that is resonant on the cesium D2 line by using a below-threshold optical parametric oscillator (OPO). The OPO is based on a periodically-poled KTiOPO4 (PPKTP) crystal that is pumped using a bow-tie four-mirror ring frequency doubler. The phase of the squeezed light is controlled using a quantum noise locking technique. At a pump power of 115 mW, maximum quadrature phase squeezing of 3.5 dB and anti-squeezing of 7.5 dB are detected using a home-made balanced homodyne detector. This squeezed vacuum at an atomic transition in the kilohertz range is an ideal quantum source for quantum metrology of enhancing measurement precision, especially for ultra-sensitive measurement of weak magnetic fields when using a Cs atomic magnetometer in the audio frequency range. -
DownLoad: