A glimpse into the Pandora Box of the quantum mechanics: the Pauli Exclusion Principle Violation and spontaneous collapse models put at test

被引:3
作者
Curceanu , C. [1 ]
Bartalucci, S. [1 ]
Bassi, A.
Bertolucci, S.
Bragadireanu, M. [1 ]
Cargnelli, M.
Clozza, A. [1 ]
Di Matteo, S.
Donadi, S.
Egger, J-P.
Guaraldo, C. [1 ]
Iliescu, M. [1 ]
Ishiwatari, T.
Laubenstein, M.
Marton, J.
Milotti, E.
Pietreanu, D. [1 ]
Piscicchia, K. [1 ]
Lener, M. Poli [1 ]
Ponta, T.
Rizzo, A. [1 ]
Vidal, A. Romero [1 ]
Scordo, A. [1 ]
Sirghi, D. L. [1 ]
Sirghi, F. [1 ]
Sperandio, L. [1 ]
Doce, O. Vazquez [1 ]
Widmann, E.
Zmeskal, J.
机构
[1] Ist Nazl Fis Nucl, Lab Nazl Frascati, CP 13,Via E Fermi 40, I-00044 Rome, Italy
来源
QUANTUM THEORY: RECONSIDERATION OF FOUNDATIONS 6 | 2012年 / 1508卷
关键词
spin-statistics; Pauli Exclusion Principle violation; collapse models; X-ray measurements; X-RAY-DETECTORS; SPONTANEOUS LOCALIZATION; MACROSCOPIC SYSTEMS; EXPERIMENTAL LIMIT; UNIFIED DYNAMICS; STATISTICS; ELECTRONS; CONNECTION; TRANSITION; SEARCH;
D O I
10.1063/1.4773125
中图分类号
O59 [应用物理学];
学科分类号
摘要
The Pauli exclusion principle (PEP) and, more generally, the spin-statistics connection, is at the very basis of our understanding of matter and Nature. The PEP spurs, presently, a lively debate on its possible limits, deeply rooted in the very foundations of Quantum Mechanics and Quantum Field Theory. Therefore, it is extremely important to test the limits of its validity. Quon theory provides a suitable mathematical framework of possible small violation of PEP, where the q violation parameter translates into a probability of violating PEP. Experimentally, setting a bound on PEP violation means confining the q-parameter to a value very close to either 1 (for bosons) or -1 (for fermions). The VIP (VIolation of the Pauli exclusion principle) experiment established a limit on the probability that PEP is violated by electrons, using the very clean method of searching for PEP forbidden atomic transitions in copper. We describe the experimental method, the obtained results, both in terms of the q-parameter and as probability of PEP violation, we briefly discuss the results and present plans to go beyond the actual limit by upgrading the experimental technique using vetoed new spectroscopical fast Silicon Drift Detectors. We discuss as well the possibility of using a similar experimental technique to search for X-rays generated as a signature of the spontaneous collapse of the wave function, predicted by continous spontaneous localization type theories.
引用
收藏
页码:136 / 145
页数:10
相关论文
共 48 条
  • [1] Is Quantum Theory Exact?
    Adler, Stephen L.
    Bassi, Angelo
    [J]. SCIENCE, 2009, 325 (5938) : 275 - 276
  • [2] COMMENTS ON TESTING THE PAULI PRINCIPLE
    AMADO, RD
    PRIMAKOFF, H
    [J]. PHYSICAL REVIEW C, 1980, 22 (03): : 1338 - 1340
  • [3] [Anonymous], 2004, VIP PROPOSAL LNF LNG
  • [4] Testing the Pauli exclusion principle with the NEMO-2 detector
    Arnold, R
    Augier, C
    Baker, J
    Barabash, A
    Blum, D
    Brudanin, V
    Caffrey, AJ
    Campagne, JE
    Caurier, E
    Dassié, D
    Egorov, V
    Filipova, T
    Gurriaran, R
    Guyonnet, JL
    Hubert, F
    Hubert, P
    Jullian, S
    Kochetov, O
    Kisel, I
    Kornoukhov, VN
    Kovalenko, V
    Lalanne, D
    Laplanche, F
    Leccia, F
    Linck, I
    Longuemare, C
    Marquet, C
    Mauger, F
    Nicholson, HW
    Pilugin, I
    Piquemal, F
    Reyes, JL
    Sarazin, X
    Scheibling, F
    Suhonen, J
    Sutton, CS
    Szklarz, G
    Timkin, V
    Torres, R
    Tretyak, VI
    Umatov, V
    Vanyushin, I
    Vareille, A
    Vasilyev, Y
    Vylov, T
    [J]. EUROPEAN PHYSICAL JOURNAL A, 1999, 6 (03) : 361 - 366
  • [5] New experimental limits on violations of the Pauli exclusion principle obtained with the Borexino Counting Test Facility
    Back, HO
    Balata, M
    de Bari, A
    de Bellefon, A
    Bellini, G
    Benziger, J
    Bonetti, S
    Buck, C
    Caccianiga, B
    Cadonati, L
    Calaprice, F
    Cecchet, G
    Chen, M
    Di Credico, A
    Dadoun, O
    D'Angelo, D
    Derbin, A
    Deutsch, M
    Etenko, A
    von Feilitzsch, F
    Fernholz, R
    Ford, R
    Franco, D
    Freudiger, B
    Galbiati, C
    Gazzana, S
    Giammarchi, MG
    Goeger-Neff, M
    Goretti, A
    Grieb, C
    Hampel, W
    Harding, E
    Hartmann, FX
    Heusser, G
    Ianni, A
    Ianni, AM
    de Kerret, H
    Kiko, J
    Kirsten, T
    Kobychev, VV
    Korga, G
    Korschinek, G
    Kozlov, Y
    Kryn, D
    Laubenstein, M
    Lendvai, C
    Leung, M
    Litvinovich, E
    Lombardi, P
    Machulin, I
    [J]. EUROPEAN PHYSICAL JOURNAL C, 2004, 37 (04): : 421 - 431
  • [6] Experimental test of the Pauli Exclusion Principle
    Barabash, A. S.
    [J]. FOUNDATIONS OF PHYSICS, 2010, 40 (07) : 703 - 718
  • [7] Search for anomalous carbon atoms - evidence of violation of the Pauli principle during the period of nucleosynthesis
    Barabash, AS
    Kornoukhov, VN
    Tsipenyuk, YM
    Chapyzhnikov, BA
    [J]. JETP LETTERS, 1998, 68 (02) : 112 - 116
  • [8] New experimental limit on the Pauli exclusion principle violation by electrons
    Bartalucci, S.
    Bertolucci, S.
    Bragadireanu, M.
    Cargnelli, M.
    Catitti, M.
    Curceanu, C.
    Di Matteo, S.
    Egger, J. -P.
    Guaraldo, C.
    Iliescu, M.
    Ishiwatari, T.
    Laubenstein, M.
    Marton, J.
    Milotti, E.
    Pietreanu, D.
    Ponta, T.
    Sirghi, D. L.
    Sirghi, F.
    Sperandio, L.
    Widmann, E.
    Zmeskal, J.
    [J]. PHYSICS LETTERS B, 2006, 641 (01) : 18 - 22
  • [9] Dynamical reduction models: present status and future developments
    Bassi, Angelo
    [J]. THIRD INTERNATIONAL WORKSHOP DICE2006 - QUANTUM MECHANICS BETWEEN DECOHERENCE AND DETERMINISM: NEW ASPECTS FROM PARTICLE PHYSICS TO COSMOLOGY, 2007, 67
  • [10] Measurements of the strong-interaction widths of the kaonic 3He and 4He 2p levels
    Bazzi, M.
    Beer, G.
    Bombelli, L.
    Bragadireanu, A. M.
    Cargnelli, M.
    Curceanu , C.
    d'Uffizi, A.
    Fiorini, C.
    Frizzi, T.
    Ghio, F.
    Guaraldo, C.
    Hayano, R. S.
    Iliescu, M.
    Ishiwatari, T.
    Iwasaki, M.
    Kienle, P.
    Sandri, P. Levi
    Longoni, A.
    Marton, J.
    Okada, S.
    Pietreanu, D.
    Ponta, T.
    Rizzo, A.
    Vidal, A. Romero
    Sbardella, E.
    Scordo, A.
    Shi, H.
    Sirghi, D. L.
    Sirghi, F.
    Tatsuno, H.
    Tudorache, A.
    Tudorache, V.
    Doce, O. Vazquez
    Wuenschek, B.
    Widmann, E.
    Zmeskal, J.
    [J]. PHYSICS LETTERS B, 2012, 714 (01) : 40 - 43