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崩塌模型能否通过量子振荡系统进行检验?以中微子、K介子、手性分子为例。

Are collapse models testable with quantum oscillating systems? The case of neutrinos, kaons, chiral molecules.

作者信息

Bahrami M, Donadi S, Ferialdi L, Bassi A, Curceanu C, Di Domenico A, Hiesmayr B C

机构信息

1] Department of Chemistry, K. N. Toosi University of Technology, 1587-4416 Tehran, Iran (on leave) [2] Department of Physics, University of Trieste, Strada Costiera 11, 34014 Trieste, Italy [3] The Abdus Salam ICTP, Strada Costiera 11, 34151 Trieste, Italy.

出版信息

Sci Rep. 2013;3:1952. doi: 10.1038/srep01952.

Abstract

Collapse models provide a theoretical framework for understanding how classical world emerges from quantum mechanics. Their dynamics preserves (practically) quantum linearity for microscopic systems, while it becomes strongly nonlinear when moving towards macroscopic scale. The conventional approach to test collapse models is to create spatial superpositions of mesoscopic systems and then examine the loss of interference, while environmental noises are engineered carefully. Here we investigate a different approach: We study systems that naturally oscillate-creating quantum superpositions-and thus represent a natural case-study for testing quantum linearity: neutrinos, neutral mesons, and chiral molecules. We will show how spontaneous collapses affect their oscillatory behavior, and will compare them with environmental decoherence effects. We will show that, contrary to what previously predicted, collapse models cannot be tested with neutrinos. The effect is stronger for neutral mesons, but still beyond experimental reach. Instead, chiral molecules can offer promising candidates for testing collapse models.

摘要

坍缩模型提供了一个理论框架,用于理解经典世界是如何从量子力学中产生的。它们的动力学对于微观系统(实际上)保持量子线性,而在向宏观尺度转变时则变得强烈非线性。测试坍缩模型的传统方法是创建介观系统的空间叠加,然后在精心控制环境噪声的情况下检查干涉的消失。在这里,我们研究一种不同的方法:我们研究自然振荡的系统——创建量子叠加——从而代表了一个测试量子线性的自然案例研究:中微子、中性介子和手性分子。我们将展示自发坍缩如何影响它们的振荡行为,并将它们与环境退相干效应进行比较。我们将表明,与先前预测的相反,中微子无法用于测试坍缩模型。中性介子的效应更强,但仍超出实验范围。相反,手性分子可以为测试坍缩模型提供有希望的候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67e1/6506565/d0218dbfeaa5/srep01952-f1.jpg

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