• Acta Optica Sinica
  • Vol. 38, Issue 2, 0227001 (2018)
Lixia Ma1, Jiliang Qin1, Zhihui Yan1、2、*, and Xiaojun Jia1、2
Author Affiliations
  • 1 State Key Laboratory of Quantum Optics and Quantum Optics Devices, Institute of Opto-Electronics, Shanxi University, Taiyuan, Shanxi 0 30006, China
  • 2 Collaborative Innovation Center of Extreme Optics, Shanxi University, Taiyuan, Shanxi 0 30006, China
  • show less
    DOI: 10.3788/AOS201838.0227001 Cite this Article Set citation alerts
    Lixia Ma, Jiliang Qin, Zhihui Yan, Xiaojun Jia. Fast Response Balanced Homodyne Detector for Continuous-Variable Quantum Memory[J]. Acta Optica Sinica, 2018, 38(2): 0227001 Copy Citation Text show less
    References

    [1] Wang J J, Jia X J, Peng K C. Improvement of balanced homodyne detector[J]. Acta Optica Sinica, 32, 0127001(2012).

    [2] Zhou H J, Wang W Z, Chen C Y et al. A low-noise, large-dynamic-range-enhanced amplifier based on JFET buffering input and JFET bootstrap structure[J]. IEEE Sensors Journal, 15, 2101-2105(2015). http://ieeexplore.ieee.org/document/6960851/

    [3] Zhou H J, Wang W Z, Li Z X et al. A bootstrapped, low-noise, and high-gain photodector for shot noise measure[J]. Review of Scientific Instruments, 85, 013111(2014). http://europepmc.org/abstract/med/24517749

    [4] Jin X L, Su Jing, Zheng Y H et al. Balanced homodyne detection with high common mode rejection ratio based on parameter compensation of two arbitrary photodiodes[J]. Optics Express, 23, 246195(2015). http://www.opticsinfobase.org/abstract.cfm?uri=oe-23-18-23859

    [5] Xue J, Qin J L, Zhang Y C et al. Measurement of standard vacuum noise at low frequencies[J]. Acta Physica Sinica, 65, 044211(2016).

    [6] Li F, Zhou Y Y, Jia X J. Entanglement enhancement of bipartite entangled states through coherent feedback control[J]. Acta Optica Sinica, 34, 1027001(2014).

    [7] Jia X J, Duan Z Y, Yan Z H. Dependence of continuous variable entanglement enhancement on experimental earameters[J]. Acta Optica Sinica, 33, 0227001(2013).

    [8] Caves C M. Quantummechanical noise in an interferometer[J]. Physical Review D, 23, 1693(1981). http://adsabs.harvard.edu/abs/1981PhRvD..23.1693C

    [9] Goda K, Miyakawa O, Mikhailov E E et al. A quantum-enhanced prototype gravitational-wave detector[J]. Nature Physics, 4, 472-476(2008). http://www.nature.com/nphys/journal/v4/n6/abs/nphys920.html

    [10] Abadie J, Abbott B P, Abbott R et al. A gravitational wave observatory operating beyond the quantum shot-noise limit[J]. Nature Physics, 7, 962-965(2012). http://www.nature.com/nphys/journal/v7/n12/abs/nphys2083.html

    [11] Koschorreck M, Napolitano M, Dubost B et al. Sub-projection-noise sensitivity in broadband atomic magnetometry[J]. Physical Review Letters, 104, 093602(2010). http://europepmc.org/abstract/MED/20366983

    [12] Wolfgramm F, Cerè A, Beduini F A et al. Squeezed-light optical magnetometry[J]. Physical Review Letters, 105, 053601(2010).

    [13] Horrom T, Singh R, Dowling J P et al. Quantum enhanced magnetometer with low-frequency squeezing[J]. Physical Review A, 86, 023803(2012). http://arxiv.org/abs/1202.3831

    [14] Jia X J, Yan Z H, Duan Z Y et al. Experimental realization of three-color entanglement at optical fiber communication and atomic storage wavelengths[J]. Physical Review Letters, 109, 253604(2012). http://www.ncbi.nlm.nih.gov/pubmed/23368462

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

    [16] Fleischhauer M, Lukin M D. Dark-state polaritons in electromagnetically induced transparency[J]. Physical Review Letters, 84, 5094-5097(2000). http://europepmc.org/abstract/MED/10990875

    [17] Fleischhauer M, Imamoglu A, Marangos J P et al. Electromagnetically induced transparency: Optics in coherent media[J]. Review of Modern Physics, 77, 633-673(2005). http://scitation.aip.org/getabs/servlet/GetabsServlet?prog=normal&id=RMPHAT000077000002000633000001&idtype=cvips&gifs=Yes

    [18] Xu Z X, Wu Y L, Tian L et al. Long lifetime and high-fidelity quantum of photonic polarization qubit by lifting zeeman degeneracy[J]. Physical Review Letters, 111, 240503(2013). http://europepmc.org/abstract/MED/24483636

    [19] Chen Y H, Lee M J, Wang I C et al. Coherent optical memory with high storage e?ciency and large fractional delay[J]. Physical Review Letters, 110, 083601(2013). http://europepmc.org/abstract/MED/23473142

    [20] Cviklinski J, Ortalo J, Laurat J et al. Reversible quantum interface for tunable single-sideband modulation[J]. Physical Review Letters, 101, 133601(2008). http://www.ncbi.nlm.nih.gov/pubmed/18851447/

    [21] Appel J, Eden F, Dmitry K et al. Quantum memory for squeezed light[J]. Physics Review Letters, 100, 093602(2008). http://www.ncbi.nlm.nih.gov/pubmed/18352710

    [22] Honda K, Akamatsu D, Arikawa M et al. Storage and retrieval of a squeezed vacuum[J]. Physical Review Letters, 100, 093601(2008). http://www.ncbi.nlm.nih.gov/pubmed/18352709

    [23] Wu L, Yan Z H, Liu Y H et al. Experimental generation of tripartite polarization entangled states of bright optical beams[J]. Applied Physics Letters, 108, 161102(2016). http://scitation.aip.org/content/aip/journal/apl/108/16/10.1063/1.4947103

    [24] Wu L, Liu Y H, Deng R J et al. Experimental preparation of bipartite polarization entangled optical fields at 795 nm[J]. Acta Optica Sinica, 37, 0523002(2017).

    [25] Zhang M, Zhou Y Y, Li F et al. Realization of low threshold operation of non-degenerate optical parameteric amplifier with wedged KTP crystal[J]. Acta Optica Sinica, 34, 0327001(2014).

    [26] Wu Z Q, Zhou H J, Wang Y J et al. Generation of bright amplitude squeezed-light at 1.3 μm by using a home-made all-solid-state laser as pump source[J]. Acta Sinica Quantum Optica, 19, 1-5(2013).

    [27] Zhou Q Q, Liu J L, Zhang K S. Low-noise, broadband photo-detector designs in quantum optics[J]. Acta Sinica Quantum Optica, 16, 152-157(2010).

    [28] Wang X Y, Bai Z L, Du P Y et al. Ultrastable fiber-based time-domain balanced homodyne detector for quantum communication[J]. Chinese Physics Letters, 29, 124202(2012). http://www.ingentaconnect.com/content/iop/cpl/2012/00000029/00000012/art124202

    [29] Qin J L, Yan Z H, Huo M R et al. Design of low-noise photodetector with a bandwidth of 130 MHz based on transimpedance amplification circuit[J]. Chinese Physics Letters, 14, 122701(2016). http://www.opticsinfobase.org/col/abstract.cfm?uri=col-14-12-122701

    Lixia Ma, Jiliang Qin, Zhihui Yan, Xiaojun Jia. Fast Response Balanced Homodyne Detector for Continuous-Variable Quantum Memory[J]. Acta Optica Sinica, 2018, 38(2): 0227001
    Download Citation