Coherence measures with respect to general quantum measurements

被引:37
|
作者
Xu, Jianwei [1 ]
Shao, Lian-He [2 ]
Fei, Shao-Ming [3 ,4 ]
机构
[1] Northwest A&F Univ, Coll Sci, Yangling 712100, Shaanxi, Peoples R China
[2] Xian Polytech Univ, Sch Comp Sci, Xian 710048, Peoples R China
[3] Capital Normal Univ, Sch Math Sci, Beijing 100048, Peoples R China
[4] Max Planck Inst Math Sci, D-04103 Leipzig, Germany
基金
北京市自然科学基金; 美国国家科学基金会;
关键词
D O I
10.1103/PhysRevA.102.012411
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Quantum coherence with respect to orthonormal bases has been studied extensively in the past few years. Recently, Bischof, Kampermann, and Bru beta [Phys. Rev. Lett. 123, 110402 (2019)] generalized it to the case of general positive operator-valued measure (POVM) measurements. Such POVM-based coherence, including the block coherence as a special case, have significant operational interpretations in quantifying the advantage of quantum states in quantum information processing. In this work we first establish an alternative framework for quantifying the block coherence and provide several block coherence measures. We then present several coherence measures with respect to POVM measurements, and prove a conjecture on the l(1)-norm related POVM coherence measure.
引用
收藏
页数:10
相关论文
共 50 条
  • [31] Robust fitting for the Sugeno integral with respect to general fuzzy measures
    Beliakov, Gleb
    Gagolewski, Marek
    James, Simon
    INFORMATION SCIENCES, 2020, 514 : 449 - 461
  • [32] Complementary relation of quantum coherence and quantum correlations in multiple measurements
    Zeyang Fan
    Yi Peng
    Yu-Ran Zhang
    Shang Liu
    Liang-Zhu Mu
    Heng Fan
    Scientific Reports, 9
  • [33] Creation of quantum coherence with general measurement processes
    Sanuja D. Mohanty
    Gautam Sharma
    Sk Sazim
    Biswajit Pradhan
    Arun K. Pati
    Quantum Information Processing, 2022, 21
  • [34] Complementary relation of quantum coherence and quantum correlations in multiple measurements
    Fan, Zeyang
    Peng, Yi
    Zhang, Yu-Ran
    Liu, Shang
    Mu, Liang-Zhu
    Fan, Heng
    SCIENTIFIC REPORTS, 2019, 9 (1)
  • [35] Creation of quantum coherence with general measurement processes
    Mohanty, Sanuja D.
    Sharma, Gautam
    Sazim, Sk
    Pradhan, Biswajit
    Pati, Arun K.
    QUANTUM INFORMATION PROCESSING, 2022, 21 (02)
  • [36] Quantum coherence in complex environments: general discussion
    Alvertis, Antonios M.
    Barford, William
    Worster, Susannah Bourne
    Burghardt, Irene
    Datta, Animesh
    Dijkstra, Arend
    Fay, Thomas
    Ghosh, Soumya
    Gruenbaum, Tobias
    Habershon, Scott
    Hore, P. J.
    Hutchinson, David
    Iyengar, Srinivasan
    Jones, Alex R.
    Jones, Garth
    Komarova, Ksenia
    Lawrence, Joseph
    Leonard, Jeremie
    Litman, Yair
    Mannouch, Jonathan
    Manolopoulos, David
    Martens, Craig
    Mondelo-Martell, Manel
    Picconi, David
    Plant, Dave
    Sakaushi, Ken
    Saller, Maximilian A. C.
    Schile, Addison
    Scholes, Gregory D.
    Segarra-Marti, Javier
    Segatta, Francesco
    Troisi, Alessandro
    Worth, Graham
    FARADAY DISCUSSIONS, 2020, 221 : 168 - 201
  • [37] Coherence and correlations in multitime quantum measurements of stochastic quantum trajectories
    Chernyak, V
    Sanda, F
    Mukamel, S
    PHYSICAL REVIEW E, 2006, 73 (03):
  • [38] General framework for quantum macroscopicity in terms of coherence
    Yadin, Benjamin
    Vedral, Vlatko
    PHYSICAL REVIEW A, 2016, 93 (02)
  • [39] Measurements for an experiment of macroscopic quantum coherence with SQUIDs
    Cosmelli, C
    Carelli, P
    Castellano, MG
    Chiarello, F
    Leoni, R
    Torrioli, G
    PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS, 2002, 372 : 213 - 216
  • [40] Direct estimation of quantum coherence by collective measurements
    Yuan, Yuan
    Hou, Zhibo
    Tang, Jun-Feng
    Streltsov, Alexander
    Xiang, Guo-Yong
    Li, Chuan-Feng
    Guo, Guang-Can
    NPJ QUANTUM INFORMATION, 2020, 6 (01)