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Two narrow bandwidth photons interfering in an electromagnetically induced transparency (EIT) system 被引量:4

Two narrow bandwidth photons interfering in an electromagnetically induced transparency (EIT) system
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摘要 In this paper, we have analysed in detail the quantum interference of the degenerate narrowband two-photon state by using a Mach-Zehnder interferometer, in which an electromagnetically induced transparency (EIT) medium is placed in one of two interfering beams. Our results clearly show that it is possible to coherently keep the quantum state at a single photon level in the EIT process, especially when the transparent window of the EIT medium is much larger than the bandwidth of the single photon. This shows that the EIT medium is possibly a kind of memory or repeater for the narrowband photons in the areas of quantum communication and quantum computer. This kind of experiment is feasible within the current technology. In this paper, we have analysed in detail the quantum interference of the degenerate narrowband two-photon state by using a Mach-Zehnder interferometer, in which an electromagnetically induced transparency (EIT) medium is placed in one of two interfering beams. Our results clearly show that it is possible to coherently keep the quantum state at a single photon level in the EIT process, especially when the transparent window of the EIT medium is much larger than the bandwidth of the single photon. This shows that the EIT medium is possibly a kind of memory or repeater for the narrowband photons in the areas of quantum communication and quantum computer. This kind of experiment is feasible within the current technology.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2008年第5期1798-1803,共6页 中国物理B(英文版)
基金 supported by the National Natural Science Foundation of China (Grant No 10674126) the State Key Program for Basic Research of China (Grant No 2001CB309300)
关键词 EIT narrow bandwidth PHOTONS INTERFERENCE EIT, narrow bandwidth, photons, interference
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  • 1Nielsen M A and Chuang I L 2000 Quantum Computation and Quantum Information (Cambridge: Cambridge University Prcss).
  • 2Burnham D C and Weinberg D C 1970 Phys. Rev. Lett. 25 84.
  • 3Kwiat P, Mattle K, Weinfurter H, Zeilinger A, Sergienko A and Shih Yanhua 1995 Phys. Rev. Lett. 75 4337.
  • 4Jiang Y K, Shi B S, LI J, Duan K M, Fan X F and Guo G C 2001 Chin. Phys. Lett. 18 45.
  • 5Jiang Y K, Shi B S, Li J, Fan X F and Guo G C 2000 Chin. Phys. Lett. 17 726.
  • 6Duan L M, Lukin M D, Cirac J L and Zoller P 2001 Nature (London) 414 413.
  • 7Matsukevich D N, Chaneliere T, Bhattacharya M, Lan S Y, Jenkins S D, Kennedy T A B and Kuzmich A 2005 Phys Rev. Lett. 95 040405.
  • 8de Riedmatten H, Laurat J, Chou C W, Schomburg E W, Felinto D and Kimble H J 2006 Phys. Rev. Lett. 97 113603.
  • 9Chow C W, de Reidmatten H, Felinto D, Polyakov S V and van Enk S J 2005 Nature (London) 423 828.
  • 10Eisaman M D, Andre A, Massou F, Fleischhauer M, Zi- brov A S and Lukin M D 2005 Nature 423 837.

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