[1] 胡艳敏. 固态量子信息处理和离子阱量子模拟[D]. 武汉: 中国科学院武汉物理与数学研究所, 2012: 1-10.
[2] Flensberg K. Nonabelian operations on majorana fermions via singlecharge control[J]. Physical Review Letters, 2011, 106(9): 0905031-0905034.
[3] Leijnse M, Flensberg K. Quantum information transfer between topological and spin qubit systems[J]. Physical Review Letters, 2011, 107(21): 2105021-2105025.
[4] M nsted B, Kovacic M. Quantum computing with Majorana Fermions coupled to quantum dots[D]. Copenhagen : University of Copenhagen , 2011.
[5] Nielsen M A, Chuang I L. Quantum computation and quantum information[M]. Cambridge University Press, 2010.
[6] Law K T, Lee P A, Ng T K. Majorana fermion induced resonant Andreev reflection[J]. Physical Review Letters, 2009, 103(23): 2370011-2370014.
[7] Nayak C, Simon S H, Stern A, et al. Non Abelian anyons and topological quantum computation[J]. Reviews of Modern Physics, 2008, 80(3): 1083-1159.
[8] Fu L, Kane C L. Superconducting proximity effect and Majorana fermions at the surface of a topological insulator [J]. Physical Review Letters, 2008, 100(9): 0964071-0964074.
[9] Kovalev A A, De A, Shtengel K. Spin transfer of quantum information between Majorana modes and a resonator[J]. Physical Review Letters , 2014, 112(10): 1064021-1064026.
[10] Banchi L, Giorda P, Zanardi P. Quantum information geometry of dissipative quantum phase transitions[J]. Physical Review E, 2014, 89(2): 0221021-02210210.