Highly excited eigenstates of quantum many-body systems are typically featureless thermal states. Some systems, however, possess a small number of special, low-entanglement eigenstates known as quantum scars. We introduce a quantum-inspired machine learning platform based on a Quantum Variational Autoencoder (QVAE) that detects families of scar states in spectra of many-body systems. Unlike a classical autoencoder, QVAE performs a parametrized unitary operation, allowing us to compress a single eigenstate into a smaller number of qubits. We demonstrate that the autoencoder trained on a scar state is able to detect the whole family of scar states sharing common features with the input state. We identify families of quantum many-body scars in...
We discuss a construction of quantum many-body scars in the context of holography. We consider two-d...
Quantum many-body scarring (QMBS) is a recently discovered form of weak ergodicity breaking in stron...
We consider a quantum lattice spin model featuring exact quasiparticle towers of eigenstates with lo...
We propose a class of non-integrable quantum spin chain models that exhibit quantum many-body scars ...
Recent experimental observation of weak ergodicity breaking in Rydberg atom quantum simulators has s...
The success of statistical mechanics in describing complex quantum systems rests upon typicality pro...
We provide a systematic approach for constructing approximate quantum many-body scars (QMBS) startin...
The thermodynamic description of many-particle systems rests on the assumption of ergodicity, the ab...
The discovery of Quantum Many-Body Scars (QMBS) both in Rydberg atom simulators and in the Affleck-K...
We show that the rainbow state, which has volume law entanglement entropy for most choices of bipart...
The eigenstate thermalization hypothesis describes how most isolated many-body quantum systems reach...
Thermalization is the inevitable fate of many complex quantum systems, whose dynamics allow them to ...
The weak ergodicity breaking induced by quantum many-body scars (QMBS) represents an intriguing conc...
Quantum many-body scarred systems host special non-thermal eigenstates that support periodic revival...
We study weak ergodicity breaking in a one-dimensional, nonintegrable spin-1 XY model. We construct ...
We discuss a construction of quantum many-body scars in the context of holography. We consider two-d...
Quantum many-body scarring (QMBS) is a recently discovered form of weak ergodicity breaking in stron...
We consider a quantum lattice spin model featuring exact quasiparticle towers of eigenstates with lo...
We propose a class of non-integrable quantum spin chain models that exhibit quantum many-body scars ...
Recent experimental observation of weak ergodicity breaking in Rydberg atom quantum simulators has s...
The success of statistical mechanics in describing complex quantum systems rests upon typicality pro...
We provide a systematic approach for constructing approximate quantum many-body scars (QMBS) startin...
The thermodynamic description of many-particle systems rests on the assumption of ergodicity, the ab...
The discovery of Quantum Many-Body Scars (QMBS) both in Rydberg atom simulators and in the Affleck-K...
We show that the rainbow state, which has volume law entanglement entropy for most choices of bipart...
The eigenstate thermalization hypothesis describes how most isolated many-body quantum systems reach...
Thermalization is the inevitable fate of many complex quantum systems, whose dynamics allow them to ...
The weak ergodicity breaking induced by quantum many-body scars (QMBS) represents an intriguing conc...
Quantum many-body scarred systems host special non-thermal eigenstates that support periodic revival...
We study weak ergodicity breaking in a one-dimensional, nonintegrable spin-1 XY model. We construct ...
We discuss a construction of quantum many-body scars in the context of holography. We consider two-d...
Quantum many-body scarring (QMBS) is a recently discovered form of weak ergodicity breaking in stron...
We consider a quantum lattice spin model featuring exact quasiparticle towers of eigenstates with lo...