• Laser & Optoelectronics Progress
  • Vol. 58, Issue 7, 0727001 (2021)
Qi Liu1、*, Guang Yang1、2, Min Nie1, and Meiling Zhang1
Author Affiliations
  • 1School of Communication and Information Engineering, Xi′an University of Posts and Telecommunications, Xi′an, Shaanxi 710121, China
  • 2School of Electronics and Information, Northwestern Polytechnical University, Xi′an, Shaanxi 710072, China
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    DOI: 10.3788/LOP202158.0727001 Cite this Article Set citation alerts
    Qi Liu, Guang Yang, Min Nie, Meiling Zhang. Influence of Rainfall on Performance of Satellite-Ground Quantum Links and Teleportation[J]. Laser & Optoelectronics Progress, 2021, 58(7): 0727001 Copy Citation Text show less

    Abstract

    In order to study the influence of rainfall on the transmission quality and quantum communication performance of the satellite-to-ground quantum links, this paper analyzes the relationship between rainfall intensity, extinction coefficient of raindrops and attenuation coefficient of the satellite-to-ground links based on the M-P raindrop spectra and the Mie scattering theory, establishes the model of relationship between the capacity and average fidelity of information channels under the rainfall background, and obtains the teleportation fidelity under rainfall environment on the basis of the two-particle entangled state probabilistic teleportation scheme. The theoretical analysis and simulation results show that the increase of rainfall intensity results in the increase of extinction coefficient, which further leads to the decrease of capacity and average fidelity of information channels. At the same time, rainfall causes the channel entanglement degree to be weakened, thereby reducing the fidelity of teleportation. Therefore, rainfall has a significant impact on the performance of the quantum satellite-to-ground links, and the various parameters in the satellite-to-ground quantum links must be appropriately adjusted according to rainfall intensity in order to ensure the communication quality.
    ND=N0exp-λ1D
    I'=I1exp-δextL
    δext=D1D2δer,λ,mNDdD
    δer,λ,m=δsr,λ,m+δar,λ,m
    δs(r,λ,m)=πr2Qs(x,m)
    δa(r,λ,m)=πr2Qa(x,m)
    δe(r,λ,m)=πr2Qe(x,m)
    δext=D1D2πD22×Qex,mNDdD
    ILI0=exp-δextL
    Aatm=10lg  I0IL=10Lδextlg e
    E0=pI=p1001E1=1-pX=1-p0110
    p=I0-ILI0=1-exp-δext=1-10-0.1AatmL
    ε(ρi)=(1-pi)ρi+piXρiX
    εipiρi=εp1ρ1+p1ρ2=p+p1-2pp1001-p+p1-2pp1
    sεipiρi=-(p+p1-2pp1)lbp+p1-2pp1+1-(p+p1-2pp1)lb1-(p+p1-2pp1)
    ipisε(ρi)=H2(p)
    C(p,p1)=sεipiρi-ipisε(ρi)=1-H2(p)
    ψS0E1-pψS0E+p3XψS1E+p3YψS2E+p3ZψS3E
    ε(p)=(1-p)ρ+p3(XρX+YρY+ZρZ)
    C(p,p1)=sεipiρi-ipisε(ρi)=1-H2p2
    E0=1001-pE1=0p00
    ρ=abb*c
    ε(ρ)=1-1-p1-ab1-pb*1-pc1-p
    C(p,p1)=sεipiρi-ipisε(ρi)=-p1+(1-p1)plbp1+(1-p1)p+(1-p1)(1-p)lb (1-p1)(1-p)-(1-p1)H2(p)
    E0=αp1I=αp11001E1=α1-p1X=α1-p10110E2=β1-p2IE3=βp23XE4=βp23YE5=βp23ZE6=γ1001-p3E7=γ0p300
    C(p,pi)=sεipiρi-ipisε(ρi)  =α1-p1lb1p1+1-p1lb11-p1+ β1-p2lb2p2+1-p2b21-p2-γp3+(1-p3)plb(p3+(1-p3)p+(1-p3)(1-p)lb(1-p3)(1-p)-γ(1-p3)p3lb1p3+1-p3lb11-p3
    F(ρ1,ρ2)=trρ11/2ρ2ρ11/22
    Fipiρi,εipiρi=tripiρi1/2εipiρiipiρi1/21/2
    F1=p1(p+p1-2pp1)+(1-p1)1-(p+p1-2pp1)
    F2=p+2(1-p)p1p12+p+2(1-p)(1-p1)(1-p1)2
    F3=p1p1+(1-p1)p+(1-p1)1-p
    F4=αp0(p1+p0-2p1p0)+(1-p0)1-(p1+p0-2p1p0)+βp2+2(1-p2)p0p02+p2+2(1-p2)(1-p0)(1-p0)2+γp0p0+(1-p0)p3+(1-p0)1-p3
    ϕ12=x0012+y1112
    φ34=μ0034+λ1134
    Φ1234=ϕ12φ34
    Φ1234=12Φ+23μα0014+λβ1114+Φ-23μα0014-λβ1114+Ψ+23λα0114+μβ1014+Ψ-23λα0114-μβ1014
    H1Φ1234=12Φ+23μα04+λβ1401+μα04-λβ1411+Ψ-23μα04-λβ1401+μα04+λβ1411+Ψ+23λα14+μβ0401+λα14-μβ0401+Ψ-23λα14-μβ0401+λα14+μβ0401
    U=μ/λ-1-λ2/μ2001-λ2/μ2μ/λ0000100001
    λα14+β040X+μβ1-λ2/μ2041X
    E=1000010000010010
    0S0E0S0E
    1S0E1-p1S0E+p0S1E
    ψ=μ00s+λ11s
    ψd=μ00S00E+λp11S00E+λ(1-p)p10S01E+λ(1-p)p01S10E+λp00S11E
    Cd(p)=2(1-p)(μλ-pλ2)
    Fd(p)=μ2+1-pλ22+4p1-pμλ+pμ2+1-pλ2+p2μ2λ2
    Φ+12=120012+1112
    ερ=j=1nEjρEj
    Ψ123=12α00012300E1E2+α1-p01112300E1E2+α(1-p)p01012301E1E2+α(1-p)p00112310E1E2+αp00012311E1E2+β10012300E1E2+β1-p11112300E1E2+β(1-p)p11012301E1E2+β(1-p)p10112310E1E2+βp10012311E1E2
    Φ+12=120012+1112
    ϕ2=α00E1E2+αp11E1E2+β(1-p)p01E1E202+β1-p00E1E2+α(1-p)p10E1E212
    ρ2=α2+α2p2+β2p1-pαβ1-p*α*β1-pβ2(1-p)+α2p1-p
    ρ0=α2αβ*α*ββ2
    Fρ0,ρ2trρ01/2ρρ2ρ01/22
    Qi Liu, Guang Yang, Min Nie, Meiling Zhang. Influence of Rainfall on Performance of Satellite-Ground Quantum Links and Teleportation[J]. Laser & Optoelectronics Progress, 2021, 58(7): 0727001
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