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Entropy and modular Hamiltonian for a free chiral scalar in two intervals

机译:熵和模块化汉密尔顿人为免费手守标量的两个间隔

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摘要

We calculate the analytic form of the vacuum modular Hamiltonian for a two interval region and the algebra of a current j(x)= ?Φ(x) corresponding to a chiral free scalar Φ in d = 2. We also compute explicitly the mutual information between the intervals. This model shows a failure of Haag duality for two intervals that translates into a loss of a symmetry property for the mutual information usually associated with modular invariance. Contrary to the case of a free massless fermion, the modular Hamiltonian turns out to be completely nonlocal. The calculation is done diagonalizing the density matrix by computing the eigensystem of a correlator kernel operator. These eigenvectors are obtained by a novel method that involves solving an equivalent problem for a holomorphic function in the complex plane where multiplicative boundary conditions are imposed on the intervals. Using the same technique we also rederive the free fermion modular Hamiltonian in a more transparent way.
机译:我们计算两个间隔区域的真空模块汉密米诺里安的分析形式和当前j(x)=φ(x)对应于d = 2的手性/ 2的手性标量φ的代数。我们也计算了明确的相互信息 间隔之间。 该模型显示了HAAG Tuegity的故障,其两种间隔转换为与通常与模块不变性相关联的互信息的对称性属性的丢失。 与自由无麻环的情况相反,模块化的汉密尔顿人拒绝是完全非局部的。 通过计算相关器内核运算符的EIGensystem来实现对沿密度矩阵进行对角化的。 这些特征向量是通过一种新方法获得的,该方法包括求解用于在间隔内施加乘法边界条件的复杂平面中的储象功能的等效问题。 使用相同的技术,我们还以更透明的方式重新改造自由的FERMION模块化汉密尔顿人。

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