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Quantum Metric Unveils Defect Freezing in Non-Hermitian Systems

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arxiv 2301.02247 v3 pith:RAA7TPAV submitted 2023-01-05 quant-ph cond-mat.str-el

Quantum Metric Unveils Defect Freezing in Non-Hermitian Systems

classification quant-ph cond-mat.str-el
keywords metricsystemsbrokendefectdynamicsevolutionframeworkfreezing
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Non-Hermiticity in quantum Hamiltonians leads to nonunitary time evolution and possibly complex energy eigenvalues, which can lead to a rich phenomenology with no Hermitian counterpart. In this work, we study the dynamics of an exactly solvable non-Hermitian system, hosting both $\mathcal{PT}$-symmetric and $\mathcal{PT}$-broken modes subject to a linear quench. Employing a fully consistent framework, in which the Hilbert space is endowed with a nontrivial dynamical metric, we analyze the dynamics of the generated defects. In contrast to Hermitian systems, our study reveals that PT -broken time evolution leads to defect freezing and hence the violation of adiabaticity. This physics necessitates the so-called metric framework, as it is missed by the oft used approach of normalizing quantities by the time-dependent norm of the state. Our results are relevant for a wide class of experimental systems.

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