Chin. Phys. Lett.  2007, Vol. 24 Issue (6): 1456-1459    DOI:
Original Articles |
Information-Disturbance Tradeoff in Estimating the Unknown Three-Qubit GHZ State
ZHANG Sheng-Li1,2;ZOU Xu-Bo1;LI Ke1;JIN Chen-Hui2;GUO Guang-Can1
1Key Laboratory of Quantum Information, University of Science and Technology of China, Hefei 2300262Electronic Technology Institute, Information Engineering University, Zhengzhou 450004
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ZHANG Sheng-Li, ZOU Xu-Bo, LI Ke et al  2007 Chin. Phys. Lett. 24 1456-1459
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Abstract In a recent paper, Sacchi (Phys. Rev. Lett. 96(2006)220502) studied the information-disturbance tradeoff in estimating an unknown two-qubit maximally entangled state. In this study, we explore the
tradeoff in estimating an unknown three-qubit GHZ state. The optimal
estimation process supplies a fidelity of 13/54 and the tradeoff interpolates smoothly between non-informative measurement and optimal estimation process.
Keywords: 03.67.-a      03.65.Ud     
Received: 26 December 2006      Published: 17 May 2007
PACS:  03.67.-a (Quantum information)  
  03.65.Ud (Entanglement and quantum nonlocality)  
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https://cpl.iphy.ac.cn/       OR      https://cpl.iphy.ac.cn/Y2007/V24/I6/01456
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ZHANG Sheng-Li
ZOU Xu-Bo
LI Ke
JIN Chen-Hui
GUO Guang-Can
[1] Fuchs C A and Peres A 1996 Phys. Rev. A 53 2038
[2] Banaszek K 2001 Phys. Rev. Lett. 86 1366
[3] Fuchs C A et al 2001 Phys. Rev. A 63 062305
[4] Banaszek K and Devetak I 2001 Phys. Rev. A 64052307
[5] Mista L and Fiur\'asek J 2006 Phys. Rev. A 74 022316
[6] Mista L et al 2005 Phys. Rev. A 72 012311
[7] Genoni M G et al 2006 Phys. Rev. A 74 012301
[8] Mista L 2006 Phys. Rev. A 73 032335
[9] Sacchi M F 2006 Phys. Rev. Lett. 96 220502
[10] Sacchi M F 2006 quant-ph/0610246
[11] Buscemi F and Sacchi M F 2006 Phys. Rev. A 74052320
[12] Sciarrino F et al 2006 Phys. Rev. Lett. 96020408
[13] Andersen U L et al 2006 Phys. Rev. Lett. 96020409
[14] Barnum H 2002 quant-ph/0205155
[15] D'Ariano G M 2003 Fortschr. Phys. 51 318
[16] Ozawa M 2004 Ann. Phys. (N.Y.) 311 350
[17] Maccone L 2006 Phys. Rev. A 73 042307
[18] Jin X R et al 2006 Phys. Lett. A 354 67
[19] Gao T et al 2005 J. Phys. A: Math. Gen. 385761
[20] Genoni M G and Paris M G A 2005 Phys. Rev. A 71052307
[21] Jamio\l kowski A 1972 Rep. Math. Phys. 3 275
[22] Zhelobenko D P 1973 Compact Lie Groups and TheirRepresentations (Providence, RI: American Mathematical Society)
[23] Ac\'\in A, Tarrach R and Vidal G 2000 Phys. Rev. A 61 062307
[24] Dobrza\'nski R et al 2006 Phys. Rev. A 73032313
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