机构:
Lab Nacl Computacao Cient LNCC, BR-25651075 Rio De Janeiro, BrazilLab Nacl Computacao Cient LNCC, BR-25651075 Rio De Janeiro, Brazil
Marquezino, F. L.
[1
]
Portugal, R.
论文数: 0引用数: 0
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机构:
Lab Nacl Computacao Cient LNCC, BR-25651075 Rio De Janeiro, BrazilLab Nacl Computacao Cient LNCC, BR-25651075 Rio De Janeiro, Brazil
Portugal, R.
[1
]
Abal, G.
论文数: 0引用数: 0
h-index: 0
机构:
Univ La Republ, Inst Fis, Montevideo 11300, UruguayLab Nacl Computacao Cient LNCC, BR-25651075 Rio De Janeiro, Brazil
Abal, G.
[3
]
Donangelo, R.
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机构:
Univ Fed Rio de Janeiro, Inst Fis, BR-21941972 Rio De Janeiro, Brazil
Univ La Republ, Inst Fis, Montevideo 11300, UruguayLab Nacl Computacao Cient LNCC, BR-25651075 Rio De Janeiro, Brazil
Donangelo, R.
[2
,3
]
机构:
[1] Lab Nacl Computacao Cient LNCC, BR-25651075 Rio De Janeiro, Brazil
[2] Univ Fed Rio de Janeiro, Inst Fis, BR-21941972 Rio De Janeiro, Brazil
[3] Univ La Republ, Inst Fis, Montevideo 11300, Uruguay
The mixing time of a discrete-time quantum walk on the hypercube is considered. The mean probability distribution of a Markov chain on a hypercube is known to mix to a uniform distribution in time O(n log n). We show that the mean probability distribution of a discrete-time quantum walk on a hypercube mixes to a (generally nonuniform) distribution pi(x) in time O(n), and the stationary distribution is determined by the initial state of the walk. An explicit expression for pi(x) is derived for the particular case of a symmetric walk. These results are consistent with those obtained previously for a continuous-time quantum walk. The effect of decoherence due to randomly breaking links between connected sites in the hypercube is also considered. We find that the probability distribution mixes to the uniform distribution as expected. However, the mixing time has a minimum at a critical decoherence rate p approximate to 0.1. A similar effect was previously reported for a quantum walk on an N-cycle with decoherence from repeated measurements of position. A controlled amount of decoherence helps in obtaining-and preserving-a uniform distribution over the 2(n) sites of the hypercube in the shortest possible time.