Generation and Measurement of Squeezed Vacuum States at Audio-Band Frequencies
Squeezed vacuum states at audio-band frequencies are important quantum resources for practical applications. We demonstrated the generation of squeezed vacuum states at the audio-band frequencies from a subthreshold optical parametric oscillator with a periodically poled KTiOPO<sub>4</sub&g...
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doaj-e600466df75e47cc93c7f6f172a9f5f92020-11-25T00:52:53ZengMDPI AGApplied Sciences2076-34172019-03-0197127210.3390/app9071272app9071272Generation and Measurement of Squeezed Vacuum States at Audio-Band FrequenciesYinghao Gao0Jinxia Feng1Yuanji Li2Kuanshou Zhang3State Key Laboratory of Quantum Optics and Quantum Optics Devices, Institute of Opto-Electronics, Shanxi University, Taiyuan 030006, ChinaState Key Laboratory of Quantum Optics and Quantum Optics Devices, Institute of Opto-Electronics, Shanxi University, Taiyuan 030006, ChinaState Key Laboratory of Quantum Optics and Quantum Optics Devices, Institute of Opto-Electronics, Shanxi University, Taiyuan 030006, ChinaState Key Laboratory of Quantum Optics and Quantum Optics Devices, Institute of Opto-Electronics, Shanxi University, Taiyuan 030006, ChinaSqueezed vacuum states at audio-band frequencies are important quantum resources for practical applications. We demonstrated the generation of squeezed vacuum states at the audio-band frequencies from a subthreshold optical parametric oscillator with a periodically poled KTiOPO<sub>4</sub> crystal pumped by a homemade continuous wave single-frequency dual-wavelength laser. To detect squeezed vacuum states at audio-band frequencies, the influences of the local oscillator (LO) power, the common mode rejection ratio (CMRR) of balanced homodyne detectors, and the phase jitter between the LO and squeezed vacuum field on the measurement of squeezed vacuum states at audio-band frequencies were considered. By optimizing the LO power, improving the CMRR of photodetectors to 67 dB based on the design of differential fine-tuning circuit and adjustable bias voltage, and reducing the phase jitter between the LO and squeezed vacuum field to 1.7° with the help of the coherent locking technique, 6.1 ± 0.3 dB squeezed vacuum states at audio frequencies from 5 kHz to 20 kHz were generated. A 3.0 ± 0.3 dB phase squeezed vacuum state was obtained at the audio frequency of 3.5 kHz.https://www.mdpi.com/2076-3417/9/7/1272squeezed vacuum statesaudio-band frequenciessubthreshold optical parametric oscillator |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yinghao Gao Jinxia Feng Yuanji Li Kuanshou Zhang |
spellingShingle |
Yinghao Gao Jinxia Feng Yuanji Li Kuanshou Zhang Generation and Measurement of Squeezed Vacuum States at Audio-Band Frequencies Applied Sciences squeezed vacuum states audio-band frequencies subthreshold optical parametric oscillator |
author_facet |
Yinghao Gao Jinxia Feng Yuanji Li Kuanshou Zhang |
author_sort |
Yinghao Gao |
title |
Generation and Measurement of Squeezed Vacuum States at Audio-Band Frequencies |
title_short |
Generation and Measurement of Squeezed Vacuum States at Audio-Band Frequencies |
title_full |
Generation and Measurement of Squeezed Vacuum States at Audio-Band Frequencies |
title_fullStr |
Generation and Measurement of Squeezed Vacuum States at Audio-Band Frequencies |
title_full_unstemmed |
Generation and Measurement of Squeezed Vacuum States at Audio-Band Frequencies |
title_sort |
generation and measurement of squeezed vacuum states at audio-band frequencies |
publisher |
MDPI AG |
series |
Applied Sciences |
issn |
2076-3417 |
publishDate |
2019-03-01 |
description |
Squeezed vacuum states at audio-band frequencies are important quantum resources for practical applications. We demonstrated the generation of squeezed vacuum states at the audio-band frequencies from a subthreshold optical parametric oscillator with a periodically poled KTiOPO<sub>4</sub> crystal pumped by a homemade continuous wave single-frequency dual-wavelength laser. To detect squeezed vacuum states at audio-band frequencies, the influences of the local oscillator (LO) power, the common mode rejection ratio (CMRR) of balanced homodyne detectors, and the phase jitter between the LO and squeezed vacuum field on the measurement of squeezed vacuum states at audio-band frequencies were considered. By optimizing the LO power, improving the CMRR of photodetectors to 67 dB based on the design of differential fine-tuning circuit and adjustable bias voltage, and reducing the phase jitter between the LO and squeezed vacuum field to 1.7° with the help of the coherent locking technique, 6.1 ± 0.3 dB squeezed vacuum states at audio frequencies from 5 kHz to 20 kHz were generated. A 3.0 ± 0.3 dB phase squeezed vacuum state was obtained at the audio frequency of 3.5 kHz. |
topic |
squeezed vacuum states audio-band frequencies subthreshold optical parametric oscillator |
url |
https://www.mdpi.com/2076-3417/9/7/1272 |
work_keys_str_mv |
AT yinghaogao generationandmeasurementofsqueezedvacuumstatesataudiobandfrequencies AT jinxiafeng generationandmeasurementofsqueezedvacuumstatesataudiobandfrequencies AT yuanjili generationandmeasurementofsqueezedvacuumstatesataudiobandfrequencies AT kuanshouzhang generationandmeasurementofsqueezedvacuumstatesataudiobandfrequencies |
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