Relative phase between multiple time-periodic drivings reactivates and tunes the direction of non-Hermitian skin effects by breaking temporal symmetry constraints in PT-symmetric quantum chains.
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In disordered topological superconductor antidot vortices, Majorana zero mode probability density variance is twice that of CdGM states because MZM wave functions are real while CdGM ones are complex.
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Realizing tunable non-Hermitian skin effects in dynamical quantum systems via the relative phase between multiple time-periodic driving
Relative phase between multiple time-periodic drivings reactivates and tunes the direction of non-Hermitian skin effects by breaking temporal symmetry constraints in PT-symmetric quantum chains.
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Statistical Signatures of Majorana Zero Modes in Disordered Topological Superconductor Antidot Vortices
In disordered topological superconductor antidot vortices, Majorana zero mode probability density variance is twice that of CdGM states because MZM wave functions are real while CdGM ones are complex.