No Approximate Complex Fermion Coherent States

被引:0
|
作者
Tomáš Tyc
Brett Hamilton
Barry C. Sanders
William D. Oliver
机构
[1] Masaryk University,Institute of Theoretical Physics
[2] University of Calgary,Institute for Quantum Information Science
[3] Macquarie University,Australian Centre of Excellence for Quantum Computer Technology
[4] MIT Lincoln Laboratory,undefined
来源
Foundations of Physics | 2007年 / 37卷
关键词
fermion coherent states; 05.30.Jp; 05.30.Fk; 42.50.Ar;
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摘要
Whereas boson coherent states with complex parametrization provide an elegant, and intuitive representation, there is no counterpart for fermions using complex parametrization. However, a complex parametrization provides a valuable way to describe amplitude and phase of a coherent beam. Thus we pose the question of whether a fermionic beam can be described, even approximately, by a complex-parametrized coherent state and define, in a natural way, approximate complex-parametrized fermion coherent states. Then we identify four appealing properties of boson coherent states (eigenstate of annihilation operator, displaced vacuum state, preservation of product states under linear coupling, and factorization of correlators) and show that these approximate complex fermion coherent states fail all four criteria. The inapplicability of complex parametrization supports the use of Grassman algebras as an appropriate alternative.
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页码:1519 / 1539
页数:20
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