Preview

Nanosystems: Physics, Chemistry, Mathematics

Advanced search

Linear optical quantum computing

About the Author

G. P. Miroshnichenko

Russian Federation


References

1. Хопкрофт Дж., Мотвани Р., Ульман Дж. Введение в теорию автоматов, языков и вычислений. — М.:«Вильямс», 2002. — 528c.

2. Манин Ю. И. Вычислимое и невычислимое. — М.: Сов. Радио, 1980. — 128c.

3. Feynman R. Simulating Physics with Computers // Inter. Jour. Theor. Phys. — 1982. — V.21, №6/7. — P. 467– 488.

4. Cirac J.I., Zoller P. Quantum Computations with Cold Trapped Ions // Phys. Rev. Lett. — 1995. — V.74. — P.4091–4094.

5. Gershenfeld N.A., Chuang I.L. Bulk spin resonance quantum computation // Science. — 1997. — V.275. — P.350–356.

6. Yu. A. Pashkin, T. Yamamoto, O. Astafiev, Y. Nakamura, D. V. Averin, J. S. Tsai. Quantum oscillations in two coupled charge qubits. // Nature. — 2003. — P.421 823.

7. J. Martinis, S. Nam, J. Aumentado, and C. Urbina. Rabi oscillations in a large Josephson-junction qubit // Phys. Rev. Lett. — 2002. — V.89. — P.117901.

8. B. Kane. A silicon –based nuclear spin quantum computer// Nature. — 1998. — V.393. — P.133.

9. D. Loss and D. P. DiVincenzo, "Quantum computation with quantum dots"// Phys. Rev. — 1998. — V.57. — P.120.

10. Kitaev A. Yu., quant-ph/9707021 [11] Оптические вычисления .Под ред. Р. Арратуна. — М.: Мир, 1993. — 441 с.

11. Скалли М. О., Зубайри М. С. Квантовая оптика: Пер. с англ. / Под ред. В.В. Самарцева. — М.: ФИЗМАТЛИТ, 2003. — 512c.

12. Reck M., Zeilinger A., Bernstein H. J., and Bertani P. Experimental realization of any discrete unitary operator// Phys. Rev. Lett. — 1994. — V.73, №58.

13. Casey Robert Myers. Investigating Photonic Quantum Computation. A thesis of the degree of Doctor of Philosophy in Physics // Waterloo, Ontario, Canada, 2007.

14. Lutkenhaus N., Calsamiglia J., Suominen K. A. Bell measurements for teleportation // Phys. Rev. A . — 1999. — V.59.— 3295.

15. Cerf, N. J., Adami C., Kwiat P. G. // Phys. Rev. A — 1998. — V.57. — R1477.

16. Pieter Kok, Munro W. J., Kae Nemoto, Ralph T. C., Jonathan P. Dowling, Milburn G. J. Linear optical quantum computing with photonic qubits // Rev. Mod. Phys. — 2007. — V.79, №1.

17. Hong C. K., Ou Z. Y., Mandel L. Measurement of subpicosecond time intervals between two photons by interference // Phys. Rev. Lett. — 1987. — V.59. — P.2044–2046.

18. Milburn, G. J. Quantum Optical Fredkin Gate // Phys. Rev. Lett. — 1998. — V.62. — 2124.

19. Knill E., Laflamme R. Milburn G. J. A scheme for efficient quantum computation with linear optics // Nature London. — 2001. — 409, 46.

20. Miroshnichenko G. P. Discrete photodetection for protocols of linear optical quantum calculations and communications // Journal of Experimental and Theoretical Physics. — 2011. — V.112, № 6. — P.923–931.

21. Pieter Kok & Brendon W. Lovett. Introduction to Optical Quantum Information Processing. — Cambridge University Press, 1 edition, May 31, 2010.

22. Franson J.D., Donegan M.M., Jacobs B.C. Generation of entangled ancilla states for use in linear optics quantum computing // Phys. Rev. A. — 2004. — V.69. — P.052328.

23. Federico M. Spedalieri, Hwang Lee, Jonathan P. Dowling. High-fidelity linear optical quantum computing with polarization encoding // Physical Review A. — 2006. — V.73. — P.012334.

24. O’Brien J. L., Pryde G. J., White A. G., Ralph T. C. High-Fidelity Z-Measurement Error Correction of Optical Qubits. arXiv:quant-ph/0408064v1 10 Aug 2004.

25. Pittman T. B., Fitch M. J., Jacobs B. C., Franson J. D. Experimental controlled-NOT logic gate for single photons in the coincidence basis. // Physical Review A. — 2003. — V.68. — P.032316.

26. O’Brien J. L., Pryde G. J., White A. G., Ralph T. C., Branning D. Demonstration of an all-optical quantum controlled-NOT gate // Nature. — 2003. — V.426. — 264.

27. O’Brien J. L., Pryde G. J., Gilchrist A., James D. F.V., Langford N. K., Ralph T. C., White A.G. Quantum Process Tomography of a Controlled-NOT Gate // Phys. Rev. Lett. — 2004. — V.93. — P.080502.

28. Sara Gasparoni, Jian-Wei Pan, PhilipWalther, Terry Rudolph, and Anton Zeilinger. Realization of a Photonic Controlled-NOT Gate Sufficient for Quantum Computation // Phys. Rev. Lett. — 2004. — V.93. — P.020504.

29. Ben Criger, Osama Moussa, Raymond Laamme. Quantum Error Correction with Mixed Ancilla Qubits. arXiv:1201.1517v2 [quant-ph] 8 Mar 2012.

30. Ralph T. C., Hayes A. J. F., Gilchrist A. Loss-Tolerant Optical Qubits // Phys. Rev. Lett. — 2005. — V.95. — P.100501.

31. O’Brien J. L., Pryde G. J., White A. G., Ralph T. C. High-fidelity Z-measurement error encoding of optical qubits // Phys. Rev. A. — 2005. — V.71. — P.060303.

32. Pittman T. B., Jacobs B. C., Franson J. D. Demonstration of quantum error correction using linear optics // Phys. Rev. A. — 2005. — V.71. — P.052332.

33. Robert Raussendorf and Hans J. Briegel. A One-Way Quantum Computer // Phys. Rev. Lett. — 2001. — V.86. — 5188.

34. Michael A. Nielsen. Optical Quantum Computation Using Cluster States // Phys. Rev. Lett. — 2004. — V.93. — P.040503.

35. Daniel E. Browne and Terry Rudolph. Resource-Efficient Linear Optical Quantum Computation // Phys. Rev. Lett. — 2005. — V.95. — P.010501.

36. Walther P., Resch K. J., Rudolph T., Schenck E., Weinfurter H., Vedral V., Aspelmeyer M., Zeilinger A. Experimental one-way quantum computing // Nature. — 2005. — V.434. — 169.

37. Nikolai Kiesel, Christian Schmid, Ulrich Weber, Geza Toth, Otfried Guhne, Rupert Ursin, and Harald Weinfurter. Experimental Analysis of a Four-Qubit Photon Cluster State. Phys. Rev. Lett. 95, 210502 (2005).

38. Robert Prevedel, Philip Walther, Felix Tiefenbacher, Pascal Bohi, Rainer Kaltenbaek, Thomas Jennewein, Anton Zeilinger. High-speed linear optics quantum computing using active feed-forward // Nature. — 2007. — V.445. — 65.

39. C.Y. Lu et al. Experimental entanglement of six photons in graph states // Nat. Phys. — 2007. — V.3. — 91.

40. Thomas Jennewein, Marco Barbieri, Andrew G. White. Single-photon device requirements for operating linear optics quantum computing outside the post-selection basis // Journal of Modern Optics. — 2011. — V.58. — P.276–287.

41. Sylvain Fasel, Olivier Alibart, Sebastien Tanzilli, Pascal Baldi, Alexios Beveratos, Nicolas Gisin, Hugo Zbinden. High-quality asynchronous heralded single-photon source at telecom wavelength // New J. Phys. — 2004. — 6.

42. Markus Hijlkema, BernhardWeber, Holger P. Specht, Simon C. Webster, Axel Kuhn, and Gerhard Rempe. A single-photon server with just one atom // Nature Phys. — 2007. — V.3. — P.253–255.

43. Andrew J. Shields. Semiconductor quantum light sources // Nature Photon. — 2007. — V.1. — P.215–223.

44. Kardynal B. E., Yuan Z. L., Shields A. J. An avalanche-photodiode-based photon-number-resolving detector// Nature photonics. — 2008. — V.2. — 425.

45. Adriana E. Lita, Aaron J. Miller, Sae Woo Nam. Counting near-infrared single-photons with 95% efficiency// Opt. Express. — 2008. — V.16. — P.3032–3040.

46. Miki S., Fujiwara M., Sasaki M., Baek B., Miller A. J., Hadfield R. H., Nam S. W., Wang Z. Large sensitivearea nbn nanowire superconducting single-photon detectors fabricated on single-crystal MgO substrates // Appl. Phys. Lett. — 2008. — V.92. — P.061116.

47. Aleksander Divochiy, Francesco Marsili, David Bitauld, Alessandro Gaggero, Roberto Leoni, Francesco Mattioli, Alexander Korneev, Vitaliy Seleznev, Nataliya Kaurova, Olga Minaeva, Gregory Gol’tsman, Konstantinos G. Lagoudakis, Moushab Benkhaoul, Francis Levy, Andrea Fiore. Superconducting nanowire photon-number-resolving detector at telecommunication wavelengths // Nature Photon. — 2008. — V.2. — P.302–306.

48. Brian J. Smith, Dmytro Kundys, Nicholas Thomas-Peter, Smith P. G. R., Walmsley I. A. Phase-controlled integrated photonic quantum circuits. arXiv:0905.2933v2 [quant-ph] 23 Sep 2009.

49. Alberto Politi, Martin J. Cryan, John G. Rarity, Siyuan Yu, Jeremy L. O’Brien. Silica-on-Silicon Waveguide Quantum Circuits // Science. — 2008. — V.320. — 646.

50. Alberto Politi, Jonathan C. F. Matthews, Jeremy L. O’Brien. Shor’s Quantum Factoring Algorithm on a Photonic Chip // Science. — 2009. — V.325. — 1221.

51. Alberto Peruzzo et all. Quantum Walks of Correlated Photons // Science. — 2010. — V.329. — 1500.

52. Ryo Okamoto, Jeremy L. O’Brien, Holger F. Hofmann, Shigeki Takeuchi Realization of a KnillLaflamme-Milburn C-NOT gate –a photonic quantum circuit combining effective optical nonlinearities. arXiv:1006.4743v1 [quant-ph] 24 Jun 2010.

53. Damien Bonneau et all. Quantum interference and manipulation of entanglement in silicon wire waveguide quantum circuits. arXiv:1201.6537v1 [quant-ph] 31 Jan 2012.

54. Michael Varnava, Daniel E. Browne, and Terry Rudolph. How good must single photon sources and detectors be for efficient linear optical quantum computation? arXiv:quant-ph/0702044v2 20 Jul 2007.


Review

For citations:


Miroshnichenko G.P. Linear optical quantum computing. Nanosystems: Physics, Chemistry, Mathematics. 2012;3(4):36-53. (In Russ.)

Views: 7


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2220-8054 (Print)
ISSN 2305-7971 (Online)