info:eu-repo/semantics/article
Controlled quantum state transfer in XX spin chains at the Quantum Speed Limit
Fecha
2021-01Registro en:
Acosta Coden, Diego Sebastián; Gomez, Sergio Santiago; Ferrón, Alejandro; Osenda, Omar; Controlled quantum state transfer in XX spin chains at the Quantum Speed Limit; Elsevier Science; Physics Letters A; 387; 1-2021; 1-13
0375-9601
CONICET Digital
CONICET
Autor
Acosta Coden, Diego Sebastián
Gomez, Sergio Santiago
Ferrón, Alejandro
Osenda, Omar
Resumen
The Quantum Speed Limit (QSL) can be found in many different situations, in particular in the propagation of information through quantum spin chains. In homogeneous chains it implies that taking information from one extreme of the chain to the other will take a time O(N/2), where N is the chain length. Using Optimal Control Theory we design control pulses that achieve near perfect population transfer between the extremes of the chain at times on the order of N/2. Our results show that the control pulses that govern the dynamical behavior of chains with different lengths are closely related. The pulses were constructed for control schemes involving one or two actuators in chains with exchange couplings without static disorder. Our results also show that the two actuator scheme is considerably more robust against the presence of static disorder than the scheme that uses just a single one.
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