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首页> 外文期刊>International journal of geometric methods in modern physics >Quantum mechanics as a spontaneously broken gauge theory on a U(1) gerbe
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Quantum mechanics as a spontaneously broken gauge theory on a U(1) gerbe

机译:量子力学作为U(1)gerbe上的自发破裂规范理论

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摘要

Any quantum-mechanical system possesses a U(1) gerbe naturally defined on configuration space. Acting on Feynman's kernel exp(iS/h), this U(1) symmetry allows one to arbitrarily pick the origin for the classical action S, on a point-by-point basis on configuration space. This is equivalent to the statement that quantum mechanics is a U(1) gauge theory. Unlike Yang-Mills theories, however, the geometry of this gauge symmetry is not given by a fibre bundle, but rather by a gerbe. Since this gauge symmetry is spontaneously broken, an analogue of the Higgs mechanism must be present. We prove that a Heisenberg-like noncommutativity for the space coordinates is responsible for the breaking. This allows to interpret the noncommutativity of space coordinates as a Higgs mechanism on the quantum-mechanical U(1) gerbe.
机译:任何量子力学系统都具有在配置空间上自然定义的U(1)gerbe。通过作用于费曼的内核exp(iS / h),这种U(1)对称性允许在配置空间的逐点基础上,任意选择经典动作S的原点。这等效于量子力学是U(1)规范理论的说法。但是,与Yang-Mills理论不同,这种规范对称性的几何形状不是由纤维束给出的,而是由gerbe给出的。由于这种规范的对称性是自发破坏的,因此必须存在类似于希格斯机理的模型。我们证明了空间坐标的类似于海森堡的非交换性是造成破坏的原因。这允许将空间坐标的非交换性解释为量子力学U(1)gerbe上的希格斯机制。

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