activity
20142024
most citedConstructing local integrals of motion in the many-body localized phase

308 citations · 370 across the 6 of their papers we have counts for

collaborators

6 papers

quant-ph2024

The Cost of Entanglement Renormalization on a Fault-Tolerant Quantum Computer

Joshua Job, Isaac H. Kim, Eric Johnston +1

We perform a detailed resource estimate for the prospect of using deep entanglement renormalization ansatz (DMERA) on a fault-tolerant quantum computer, focusing on the regime in w…

quant-ph20161 cited

Markovian Marignals

Isaac H. Kim

We introduce a class of so called Markovian marginals, which gives a natural framework for constructing solutions to the quantum marginal problem. We consider a set of marginals th…

cond-mat.dis-nn201415 cited

Local integrals of motion and the logarithmic lightcone in many-body localized systems

Isaac H. Kim, Anushya Chandran, Dmitry A. Abanin

We propose to define full many-body localization in terms of the recently introduced integrals of motion[Chandran et al., arXiv:1407.8480], which characterize the time-averaged res…

cond-mat.dis-nn2014308 cited

Constructing local integrals of motion in the many-body localized phase

Anushya Chandran, Isaac H. Kim, Guifre Vidal +1

Many-body localization provides a generic mechanism of ergodicity breaking in quantum systems. In contrast to conventional ergodic systems, many-body localized (MBL) systems are ch…

quant-ph201431 cited

Reconstructing quantum states from local data

Brian Swingle, Isaac H. Kim

We consider the problem of reconstructing global quantum states from local data. Because the reconstruction problem has many solutions in general, we consider the reconstructed sta…

quant-ph201415 cited

On the informational completeness of local observables

Isaac H. Kim

For a general multipartite quantum state, we formulate a locally checkable condition, under which the expectation values of certain nonlocal observables are completely determined b…