International audienceFor a quantum system in a macroscopically large volume V, prepared in a pure state and subject to maximally noisy or ergodic unitary dynamics, the reduced density matrix of any sub-system v≪V is almost surely totally mixed. We show that the fluctuations around this limiting value, evaluated according to the invariant measure of these unitary flows, are captured by the Gaussian unitary ensemble (GUE) of random matrix theory. An extension of this statement, applicable when the unitary transformations conserve the energy but are maximally noisy or ergodic on any energy shell, allows to decipher the fluctuations around canonical typicality. According to typicality, if the large system is prepared in a generic pure state in...
We analyze the thermalization properties and the validity of the Eigenstate Thermalization Hypothesi...
Thesis (Ph.D.)--University of Washington, 2013The goal of this thesis is to develop one of the threa...
In this thesis we begin by presenting an introduction on random matrices, their different classes an...
International audienceFor a quantum system in a macroscopically large volume V, prepared in a pure s...
International audienceFor a quantum system in a macroscopically large volume V, prepared in a pure s...
International audienceFor a quantum system in a macroscopically large volume V, prepared in a pure s...
International audienceFor a quantum system in a macroscopically large volume V, prepared in a pure s...
International audienceFor a quantum system in a macroscopically large volume V, prepared in a pure s...
International audienceFor a quantum system in a macroscopically large volume V, prepared in a pure s...
For a quantum system, a density matrix ρ that is not pure can arise, via averaging, from a distribut...
The total energy of an eigenstate in a composite quantum system tends to be distributed equally amon...
The total energy of an eigenstate in a composite quantum system tends to be distributed equally amon...
We study the time evolution operator in a family of local quantum circuits with random �elds in a �x...
One key issue of the foundation of statistical mechanics is the emergence of equilibrium ensembles i...
We study the time-evolution operator in a family of local quantum circuits with random fields in a f...
We analyze the thermalization properties and the validity of the Eigenstate Thermalization Hypothesi...
Thesis (Ph.D.)--University of Washington, 2013The goal of this thesis is to develop one of the threa...
In this thesis we begin by presenting an introduction on random matrices, their different classes an...
International audienceFor a quantum system in a macroscopically large volume V, prepared in a pure s...
International audienceFor a quantum system in a macroscopically large volume V, prepared in a pure s...
International audienceFor a quantum system in a macroscopically large volume V, prepared in a pure s...
International audienceFor a quantum system in a macroscopically large volume V, prepared in a pure s...
International audienceFor a quantum system in a macroscopically large volume V, prepared in a pure s...
International audienceFor a quantum system in a macroscopically large volume V, prepared in a pure s...
For a quantum system, a density matrix ρ that is not pure can arise, via averaging, from a distribut...
The total energy of an eigenstate in a composite quantum system tends to be distributed equally amon...
The total energy of an eigenstate in a composite quantum system tends to be distributed equally amon...
We study the time evolution operator in a family of local quantum circuits with random �elds in a �x...
One key issue of the foundation of statistical mechanics is the emergence of equilibrium ensembles i...
We study the time-evolution operator in a family of local quantum circuits with random fields in a f...
We analyze the thermalization properties and the validity of the Eigenstate Thermalization Hypothesi...
Thesis (Ph.D.)--University of Washington, 2013The goal of this thesis is to develop one of the threa...
In this thesis we begin by presenting an introduction on random matrices, their different classes an...