首页> 外文期刊>International Journal of Quantum Information >EXPERIMENTAL TESTS OF QUANTUM MECHANICS PAULI EXCLUSION PRINCIPLE VIOLATION (THE VIP EXPERIMENT) AND FUTURE PERSPECTIVES
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EXPERIMENTAL TESTS OF QUANTUM MECHANICS PAULI EXCLUSION PRINCIPLE VIOLATION (THE VIP EXPERIMENT) AND FUTURE PERSPECTIVES

机译:量子力学的实验测试Pauli排除原则侵犯(VIP实验)和未来展望

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摘要

The Pauli exclusion principle (PEP) is one of the basic principles of modern physics. Being at the very basis of our understanding of matter, as many other fundamental principles it spurs, presently, a lively debate on its possible limits, deeply rooted in the very foundations of Quantum Field Theory. Therefore, it is extremely important to test the limits of its validity. Quon theory provides a suitable mathematical framework of possible violation of PEP, where the violation parameter q translates into a probability of violating PEP. Experimentally, setting a bound on PEP violation means confining the violation 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 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 fromquon theory and as probability of PEP violation, we briefly discuss them and present future plans to go beyond the actual limit by upgrading the experimental technique using vetoed new spectroscopical fast Silicon Drift Detectors. We also shortly mention the possibility of using a similar experimental technique to search for eventual X-rays, generated in the spontaneous collapse models.
机译:保利排斥原理(PEP)是现代物理学的基本原理之一。作为我们对物质的理解的基础,它激发了许多其他基本原理,目前,关于其可能的局限性的热烈辩论已深深植根于量子场论的基础。因此,测试其有效性的限制非常重要。 Quon理论提供了可能违反PEP的合适数学框架,其中违反参数q转换为违反PEP的可能性。实验上,为PEP违反设置界限意味着将违反参数限制为非常接近1(对于玻色子)或-1(对于费米子)的值。 VIP(使用违反Pauli排除原理的实验)通过搜索铜中PEP禁止的原子跃迁的方法,限制了PEP被电子破坏的可能性。我们根据量子论的q参数以及作为违反PEP的可能性描述了实验方法和获得的结果,我们简要讨论了它们,并提出了通过否决新光谱技术升级实验技术以超越实际极限的未来计划快速的硅漂移检测器。我们还简短地提到了使用类似的实验技术搜索在自然坍塌模型中生成的最终X射线的可能性。

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