• Acta Optica Sinica
  • Vol. 37, Issue 5, 519001 (2017)
Zhang Yan1、2, Liu Jinhong1、2, Ma Rong1、2, Wang Dan1、2, Han Yuhong1、2, and Zhang Junxiang1、2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3788/aos201737.0519001 Cite this Article Set citation alerts
    Zhang Yan, Liu Jinhong, Ma Rong, Wang Dan, Han Yuhong, Zhang Junxiang. Generation of Quadrature Squeezed Vacuum Light Field for Cesium D1 Line[J]. Acta Optica Sinica, 2017, 37(5): 519001 Copy Citation Text show less
    References

    [1] Appel J, Figueroa E, Korystov D, et al. Quantum memory for squeezed light[J]. Phys Rev Lett, 2008, 100(9): 093602.

    [2] Hald J, Srensen J L, Schori C, et al. Spin squeezed atoms: a macroscopic entangled ensemble created by light[J]. Phys Rev Lett, 1999, 83(7): 1319-1322.

    [3] Yuan Z S, Chen Y A, Zhao B, et al. Experimental demonstration of a BDCZ quantum repeater node[J]. Nature, 2008, 454(7208): 1098-1101.

    [4] Polzik E S, Carri J, Kimble H J. Spectroscopy with squeezed light[J]. Phys Rev Lett, 1992, 68(20): 3020-3023.

    [5] Kimble H J. The quantum internet[J]. Nature, 2008, 453(7198): 1023-1030.

    [6] Slusher R E, Hollberg L W, Yurke B, et al. Observation of squeezed states generated by four-wave mixing in an optical cavity[J]. Phys Rev Lett, 1985, 55(22): 2409-2412.

    [7] McCormick C F, Boyer V, Arimondo E, et al. Strong relative intensity squeezing by four-wave mixing in rubidium vapor[J]. Opt Lett, 2007, 32(2): 178-180.

    [8] Marino A M, Pooser R C, Boyer V, et al. Tunable delay of Einstein-Podolsky-Rosen entanglement[J]. Nature, 2009, 457(7231): 859-862.

    [9] Wang D, Hu L Y, Pang X M, et al. Quadripartite entanglement from a double three-level λ-type-atom model[J]. Phys Rev A, 2013, 88(4): 042314.

    [10] Guo M J, Zhou H T, Wang D, et al. Experimental investigation of high-frequency-difference twin beams in hot cesium atoms[J]. Phys Rev A, 2014, 89(3): 033813.

    [11] Qin Z Z, Cao L M, Wang H L, et al. Experimental generation of multiple quantum correlated beams from hot rubidium vapor[J]. Phys Rev Lett, 2014, 113(2): 023602.

    [12] Qin Z Z, Cao L M, Jing J T. Experimental characterization of quantum correlated triple beams generated by cascaded four-wave mixing processes[J]. Appl Phys Lett, 2015, 106(21): 211104.

    [13] Wu L A, Kimble H J, Hall J L, et al. Generation of squeezed states by parametric down conversion[J]. Phys Rev Lett, 1986, 57(20): 2520-2523.

    [14] Pan Qing, Zhang Yun, Zhang Tiancai, et al. Experimental research for intensity difference squeezed light generation at 1.08 μm wavelength with low pump threshold and high conversion efficiency[J]. Chinese J Lasers, 1997, 24(7): 631-634.

    [15] Eberle T, Steinlechner S, Bauchrowitz J, et al. Quantum enhancement of the zero-area Sagnac interferometer topology for gravitational wave detection[J]. Phys Rev Lett, 2010, 104(25): 251102.

    [16] Zhou Y Y, Jia X J, Li F, et al. Experimental generation of 8.4 dB entangled state with an optical cavity involving a wedged type-II nonlinear crystal[J]. Opt Express, 2015, 23(4): 4952-4959.

    [17] Vahlbruch H, Mehmet M, Danzmann K, et al. Detection of 15 dB squeezed states of light and their application for the absolute calibration of photoelectric quantum efficiency[J]. Phys Rev Lett, 2016, 117(11): 110801.

    [18] Suzuki S, Yonezawa H, Kannari F, et al. 7 dB quadrature squeezing at 860 nm with periodically poled KTiOPO4[J]. Appl Phys Lett, 2006, 89(6): 061116.

    [19] Takeno Y, Yukawa M, Yonezawa H, et al. Observation of -9 dB quadrature squeezing with improvement of phase stability in homodyne measurement[J]. Opt Express, 2007, 15(7): 4321-4327.

    [20] Burks S, Ortalo J, Chiummo A, et al. Vacuum squeezed light for atomic memories at the D2 cesium line[J]. Opt Express, 2009, 17(5): 3777-3781.

    [21] Tanimura T, Akamatsu D, Yokoi Y, et al. Generation of a squeezed vacuum resonant on a rubidium D1 line with periodically poled KTiOPO4[J]. Opt Lett, 2006, 31(15): 2344-2346.

    [22] Hetet G, Glock O, Pilypas K A, et al. Squeezed light at 795 nm using periodically poled KTP[C]. CLEOE-IQEC, 2007, IF5: IF5_3.

    [23] Predojevic' A, Zhai Z, Caballero J M, et al. Rubidium resonant squeezed light from a diode-pumped optical-parametric oscillator[J]. Phys Rev A, 2008, 78(6): 063820.

    [24] Han Y S, Wen X, He J, et al. Improvement of vacuum squeezing resonant on the rubidium D1 line at 795 nm[J]. Opt Express, 2016, 24(3): 2350-2359.

    [25] Pinotsi D, Imamoglu A. Single photon absorption by a single quantum emitter[J]. Phys Rev Lett, 2008, 100(9): 093603.

    [26] Du Zhijing, Zhang Yuchi, Wang Xiaoyong, et al. Locking multiple wavelength lasers to the transition of Cesium atoms by using a Fabry-Perot transfer cavity[J]. Acta Optica Sinica, 2006, 26(3): 452-457.

    [27] Zhang Y, Liu J H, Wu J Z, et al. Single-frequency tunable 447.3 nm laser by frequency doubling of tapered amplified diode laser at cesium D1 line[J]. Opt Express, 2016, 24(17): 19769-19775.

    [28] Walls D F, Milburn G J. Quantum optics[M]. New York: Springer Science & Business Media, 2007.

    [29] Drever R W P, Hall J L, Kowalski F V, et al. Laser phase and frequency stabilization using an optical resonator[J]. Appl Phys B, 1983, 31(2): 97-105.

    [30] Schneider K, Bruckmeier R, Hansen H, et al. Bright squeezed-light generation by a continuous-wave semimonolithic parametric amplifier[J]. Opt Lett, 1996, 21(17): 1396-1398.

    [31] Sun Zhini, Feng Jinxia, Wan Zhenju, et al. Generation of bright squeezed light at 1.5 μm telecommunication band and its Wigner function reconstruction[J]. Acta Physica Sinica, 2016, 65(4): 044203.

    [32] Liu Zengjun, Zhai Zehui, Sun Hengxin, et al. Generation of low-frequency squeezed states[J]. Acta Physica Sinica, 2016, 65(6): 060401.

    [33] Zhang Yan, Yu Xudong, Di Ke, et al. Locking the phase of balanced homodyne detection system for squeezed light[J]. Acta Physica Sinica, 2013, 62(8): 084024.

    CLP Journals

    [1] Xue Chunling, Xu Yuena. Effect of Loss on Intensity-Difference Squeezing and Amplitude-Quadrature Squeezing[J]. Laser & Optoelectronics Progress, 2018, 55(7): 72702

    Zhang Yan, Liu Jinhong, Ma Rong, Wang Dan, Han Yuhong, Zhang Junxiang. Generation of Quadrature Squeezed Vacuum Light Field for Cesium D1 Line[J]. Acta Optica Sinica, 2017, 37(5): 519001
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