High-dimensional entanglement witnessed by correlations in arbitrary bases

被引:0
作者
Li, Nicky Kai Hong [1 ,2 ,3 ]
Huber, Marcus [1 ,3 ]
Friis, Nicolai [1 ,3 ]
机构
[1] Tech Univ Wien, Atominst, Stadionallee 2, A-1020 Vienna, Austria
[2] TU Wien, Vienna Ctr Quantum Sci & Technol, A-1020 Vienna, Austria
[3] Austrian Acad Sci, Inst Quantum Opt & Quantum Informat IQOQI, Boltzmanngasse 3, A-1090 Vienna, Austria
基金
奥地利科学基金会; 欧洲研究理事会;
关键词
QUANTUM; STATE; COMMUNICATION; KEY;
D O I
10.1038/s41534-025-00990-6
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Certifying entanglement is an important step in the development of many quantum technologies, especially for higher-dimensional systems, where entanglement promises increased capabilities for quantum communication and computation. A key feature distinguishing entanglement from classical correlations is the occurrence of correlations for complementary measurement bases. In particular, mutually unbiased bases (MUBs) are a paradigmatic example that is well-understood and routinely employed for entanglement certification. However, implementing unbiased measurements exactly is challenging and not generically possible for all physical platforms. Here, we extend the entanglement-certification toolbox from correlations in MUBs to arbitrary bases. This practically significant simplification paves the way for efficient characterizations of high-dimensional entanglement in a wide range of physical systems. Furthermore, we introduce a simple three-MUBs construction for all dimensions without using the Wootters-Fields construction, potentially simplifying experimental requirements when measurements in more than two MUBs are needed, especially in high-dimensional settings.
引用
收藏
页数:9
相关论文
共 63 条
[1]   Quantum nonlocality in two three-level systems -: art. no. 052325 [J].
Acín, A ;
Durt, T ;
Gisin, N ;
Latorre, JI .
PHYSICAL REVIEW A, 2002, 65 (05) :523251-523258
[2]   Entanglement in many-body systems [J].
Amico, Luigi ;
Fazio, Rosario ;
Osterloh, Andreas ;
Vedral, Vlatko .
REVIEWS OF MODERN PHYSICS, 2008, 80 (02) :517-576
[3]   Measurements in two bases are sufficient for certifying high-dimensional entanglement [J].
Bavaresco, Jessica ;
Valencia, Natalia Herrera ;
Kloeckl, Claude ;
Pivoluska, Matej ;
Erker, Paul ;
Friis, Nicolai ;
Malik, Mehul ;
Huber, Marcus .
NATURE PHYSICS, 2018, 14 (10) :1032-+
[4]   COMMUNICATION VIA ONE-PARTICLE AND 2-PARTICLE OPERATORS ON EINSTEIN-PODOLSKY-ROSEN STATES [J].
BENNETT, CH ;
WIESNER, SJ .
PHYSICAL REVIEW LETTERS, 1992, 69 (20) :2881-2884
[5]   TELEPORTING AN UNKNOWN QUANTUM STATE VIA DUAL CLASSICAL AND EINSTEIN-PODOLSKY-ROSEN CHANNELS [J].
BENNETT, CH ;
BRASSARD, G ;
CREPEAU, C ;
JOZSA, R ;
PERES, A ;
WOOTTERS, WK .
PHYSICAL REVIEW LETTERS, 1993, 70 (13) :1895-1899
[6]  
Bennett CH, 1996, PHYS REV A, V54, P3824, DOI 10.1103/PhysRevA.54.3824
[7]  
Berndt B. C., 1998, Wiley-Interscience and Canadian Mathematics Series of Monographs and Texts, V600
[8]   The uncertainty principle in the presence of quantum memory [J].
Berta, Mario ;
Christandl, Matthias ;
Colbeck, Roger ;
Renes, Joseph M. ;
Renner, Renato .
NATURE PHYSICS, 2010, 6 (09) :659-662
[9]  
Bertlmann R. A., 2023, Modern Quantum Theory-From Quantum Mechanics to Entanglement and Quantum Information, V1040
[10]  
Bertrand J., 1845, J. de lcole Royale Polytech, V18, P123