1.1k citations · 5.2k across the 27 of their papers we have counts for
8 papers · 1 filter
Percolation in quantum computation and communication
K. Kieling, J. Eisert
This article is a draft of a book chapter of the book entitled "Quantum Percolation and Breakdown", to appear 2008.
Assessing non-Markovian dynamics
M. M. Wolf, J. Eisert, T. S. Cubitt +1
We investigate what a snapshot of a quantum evolution - a quantum channel reflecting open system dynamics - reveals about the underlying continuous time evolution. Remarkably, from…
Quantum Margulis expanders
D. Gross, J. Eisert
We present a simple way to quantize the well-known Margulis expander map. The result is a quantum expander which acts on discrete Wigner functions in the same way the classical Mar…
Do mixtures of bosonic and fermionic atoms adiabatically heat up in optical lattices?
M. Cramer, S. Ospelkaus, C. Ospelkaus +3
Mixtures of bosonic and fermionic atoms in optical lattices provide a promising arena to study strongly correlated systems. In experiments realizing such mixtures in the quantum de…
Measurement-based quantum computation beyond the one-way model
D. Gross, J. Eisert, N. Schuch +1
We introduce novel schemes for quantum computing based on local measurements on entangled resource states. This work elaborates on the framework established in [Phys. Rev. Lett. 98…
Unifying variational methods for simulating quantum many-body systems
Christopher M. Dawson, Jens Eisert, Tobias J. Osborne
We introduce a unified formulation of variational methods for simulating ground state properties of quantum many-body systems. The key feature is a novel variational method over qu…