Reduction of Quantum Systems with Arbitrary First Class Constraints and Hecke Algebras

被引:0
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作者
Alexey Sevostyanov
机构
[1] Institute of Theoretical Physics,
[2] Uppsala University,undefined
[3] Box 803,undefined
[4] S-75108 Uppsala,undefined
[5] Sweden.¶E-mail: seva¶teorfys.uu.se,undefined
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Quantum System; Module Versus; Associative Algebra; Class Constraint; Cohomology Space;
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摘要
We propose a method for reduction of quantum systems with arbitrary first-class constraints. An appropriate mathematical setting for the problem is the homology of associative algebras. For every such algebra A and subalgebra B with augmentation ɛ there exists a cohomological complex which is a generalization of the BRST one. Its cohomology is an associative graded algebra Hk*(A,B) which we call the Hecke algebra of the triple (A,B,ɛ). It acts in the cohomology space H*(B,V) for every left A module V. In particular the zeroth graded component $Hk^{0}(A,B)$ acts in the space of B invariants of $V$ and provides the reduction of the quantum system.
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页码:137 / 146
页数:9
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