• Acta Photonica Sinica
  • Vol. 46, Issue 7, 701002 (2017)
NIE Min1、*, CHANG Le1, YANG Guang1、2, ZANG Mei-ling1, and PEI Chang-xing3
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    DOI: 10.3788/gzxb20174607.0701002 Cite this Article
    NIE Min, CHANG Le, YANG Guang, ZANG Mei-ling, PEI Chang-xing. Influence of Different Mixing Patterns of Haze Particles and Water Cloud Particles on the Performance of Quantum Satellite Communication[J]. Acta Photonica Sinica, 2017, 46(7): 701002 Copy Citation Text show less
    References

    [1] PENG C Z, YANG T, BAO X H, et al. Experimental free-space distribution of entangled pairs over 13km: towards satellite-based global quantum communication[J]. Physical Review Letters, 2005, 94(15): 150501.

    [2] XU Bing-jie, LIU Wen-lin , MAO Jun-qing , et al. Research on development status and existing problems of quantum communication technology[J]. Communications Technology, 2014, 47(5): 463-468.

    [3] YIN J, CAO Y, YONG H L, et al. Lower bound on the speed of nonlocal correlations without locality and measurement choice loopholes[J]. Physical Review Letters, 2013, 110(26): 260407.

    [4] VALLONE G, D′AMBROSIO V, SPONSELLI A, et al. Free-space quantum key distribution by rotation-invariant twisted photons[J]. Physical Review Letters, 2014, 113(6): 060503.

    [5] NIE Min, SHANG Peng-gang, YANG Guang, et al. Influences of mesoscale sandstorm on the quantum satellite communication channel and performance simulation[J]. Acta Physical Sinica, 2014, 63(24): 240303.

    [6] NIE Min, GAO Kun, YANG Guang, et al. Effect of the atmospheric turbulence on the performance of free space quantum communication[J]. Acta Photonica Sinica, 2016, 45(07): 0701001.

    [7] YAN Yi, PEI Chang-qing, HAN Bao-bin, et al. Study of propagating on Earth-space paths in stratospheric quantum communication system[J]. Chinese Journal Radio Science, 2008, 23(05): 834.

    [8] WANG Li-peng, MA Yan, ZHENG Jun, et al. Aerosol optical properties in the northern suburb of nanjing during haze days in january 2013[J]. Environmental Science, 2016, 37(03): 816.

    [9] SALINAS V, CHEW B N, MIETTINEN J, et al. Physical and optical characteristics of the October 2010 haze event over Singapore: A photometric and lidar analysis[J]. Atmospheric Research, 2013, 122(3): 555-570.

    [10] XU Qiang, WANG Dong-qin, WU Zhen-sen, et al. Reaeach progress of optical scattering transmission properties of haze and other high concentration of atmospheric aerosol[J]. Journal of Atmospheric and Environmental Optics, 2015, 10(6): 437-444.

    [11] HUANG Hong-lian, HUANG Yin-bo, HAN Yong, et al. Light extinetion properties of marine aerosol partieles in internal mixing state [J]. Journal of Atmospheric and Environmental Optics, 2007, 2(3): 179 .

    [12] RANDLES C A, RUSSELL L M, RAMASWAMY V. Hygroscopic and optical properties of organic sea salt aerosol and consequences for climate forcing [J]. Geophysical Research Letters, 2004, 31(16): 309-33

    [13] LESINS G, CHYLEK P, LOHMANN U. A study of internal and external mixing scenarios and its effect on aerosol optical properties and direct radiative forcing[J]. Journal of Geophysical Research Atmospheres, 2002, 107(D10): AAC 5-1-AAC 5-12.

    [14] ACKERMAN T P, TOON O B. Absorption of visible radiation in atmosphere containing mixtures of absorbing and nonabsorbing particles [J]. Applied Optics, 1981, 20(20): 3661.

    [15] LEVONI C, CERVINO M, GUZZI R, et al. Atmospheric aerosol optical properties: a database of radiative characteristics for different components and classes [J]. Applied Optics, 1997, 36(30): 8031-8041.

    [16] WANG Hai-hua, SUN Xian-ming. Multiple scattering of light by mixtures of two different aerosol types[J]. Acta Physical Sinica, 2012, 61(15): 154204.

    [17] ZHANG Xiao-lin, HUANG Yin-bo, RAO Rui-zhong. Equivalence of light scattering by one internal-mixed model for aerosol particles[J]. Acta Optica Sinica, 2012 , 32(06): 0629001.

    [18] PSFAI M, ANDERSON J R, BUSECK P R, et al. Soot and sulfate aerosol particles in the remote marine troposphere[J]. Journal of Geophysical Research Atmospheres, 1999, 104(D17): 21685-21693.

    [19] SUN Tian-le, HE Ling-yan, HUANG Xiao-feng, et al. Characteristics of the size distribution and mixing state of black carbon aerosol in Shenzhen in winter[J]. Chinese Science Bulletin, 2011, 56(21): 1703-1710.

    [22] YAO Qing, HAN Su-mei, BI Xiao-hui. Main components and extinction characteristic of aerosol during March 2009 at Tianjin[J]. China Environmental Science, 2012, 32(2): 214-220.

    [23] FENN R W, OSER H. Scattering properties of concentric soot-water spheres for visible and infrared light[J]. Applied Optics, 1965, 4(11).

    [25] YANG Guang, LIAN Bao-wang, NIE Min. Characteristics of multi-hop noisy quantum entanglement channel and optimal relay protocol[J]. Acta Physical Sinica, 2015, 64(24): 240304.

    NIE Min, CHANG Le, YANG Guang, ZANG Mei-ling, PEI Chang-xing. Influence of Different Mixing Patterns of Haze Particles and Water Cloud Particles on the Performance of Quantum Satellite Communication[J]. Acta Photonica Sinica, 2017, 46(7): 701002
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