We study a fully connected quantum spin model resonantly coupled to a small environment of non-interacting spins, and investigate how initial state properties are remembered at long times. We find memory of initial state properties, in addition to the total energy, that are not conserved by the dynamics. This memory occurs in the middle of the spectrum where an eigenstate quantum phase transition (ESQPT) occurs as a function of energy. The memory effect at that energy in the spectrum is robust to system-environment coupling until the coupling changes the energy of the ESQPT. This work demonstrates the effect of ESQPT memory as independent of integrability and suggests a wider generality of this mechanism for preventing thermalization at ESQ...
The eigenstate thermalization hypothesis provides one picture of thermalization in a quantum system ...
Quantum many-body scarred systems host special non-thermal eigenstates that support periodic revival...
The entropy produced when a system undergoes an infinitesimal quench is directly linked to the work ...
The Eigenstate Thermalization Hypothesis (ETH) explains emergence of the thermodynamic equilibrium b...
When a generic quantum system is prepared in a simple initial condition, it typically equilibrates t...
Motivated by recent work showing that a quantum error correcting code can be generated by hybrid dyn...
Typically, it is assumed that a high-energy eigenstate of a generic interacting quantum many-body Ha...
Quantum chaos and the eigenstate thermalization hypothesis are based on the assumption of the validi...
Quantum chaos and the eigenstate thermalization hypothesis are based on the assumption of the validi...
Thermalization and its breakdown in isolated systems has led to a deeper understanding of non-equili...
We consider the statistical properties of eigenstates of the time-evolution operator in chaotic many...
One of the features of many-body quantum systems with Hilbert-space fragmentation is the existence o...
In the long quest to identify and compensate the sources of decoherence in many-body systems far fro...
The eigenstate thermalization hypothesis provides one picture of thermalization in a quantum system ...
We study thermalization of transverse field Ising chain with power law decaying interaction $\sim 1/...
The eigenstate thermalization hypothesis provides one picture of thermalization in a quantum system ...
Quantum many-body scarred systems host special non-thermal eigenstates that support periodic revival...
The entropy produced when a system undergoes an infinitesimal quench is directly linked to the work ...
The Eigenstate Thermalization Hypothesis (ETH) explains emergence of the thermodynamic equilibrium b...
When a generic quantum system is prepared in a simple initial condition, it typically equilibrates t...
Motivated by recent work showing that a quantum error correcting code can be generated by hybrid dyn...
Typically, it is assumed that a high-energy eigenstate of a generic interacting quantum many-body Ha...
Quantum chaos and the eigenstate thermalization hypothesis are based on the assumption of the validi...
Quantum chaos and the eigenstate thermalization hypothesis are based on the assumption of the validi...
Thermalization and its breakdown in isolated systems has led to a deeper understanding of non-equili...
We consider the statistical properties of eigenstates of the time-evolution operator in chaotic many...
One of the features of many-body quantum systems with Hilbert-space fragmentation is the existence o...
In the long quest to identify and compensate the sources of decoherence in many-body systems far fro...
The eigenstate thermalization hypothesis provides one picture of thermalization in a quantum system ...
We study thermalization of transverse field Ising chain with power law decaying interaction $\sim 1/...
The eigenstate thermalization hypothesis provides one picture of thermalization in a quantum system ...
Quantum many-body scarred systems host special non-thermal eigenstates that support periodic revival...
The entropy produced when a system undergoes an infinitesimal quench is directly linked to the work ...