We consider quantum error-correcting subsystem codes whose gauge generators realize a translation-invariant, free-fermion-solvable spin model. In this setting, errors are suppressed by a Hamiltonian whose terms are the gauge generators of the code and whose exact spectrum and eigenstates can be found via a generalized Jordan-Wigner transformation. Such solutions are characterized by the frustration graph of the Hamiltonian: the graph whose vertices are Hamiltonian terms, which are neighboring if the terms anticommute. We provide methods for embedding a given frustration graph in the anticommutation relations of a spin model and present the first known example of an exactly solvable spin model with a two-dimensional free-fermion description ...
The study of the properties of quantum mechanical systems of many particles occupies a central role ...
Mapping the decoding of quantum error correcting (QEC) codes to classical disordered statistical mec...
As the beginning of the age of quantum supremacy comes closer, researches have been focusing on how ...
I solve a quantum chain whose Hamiltonian is comprised solely of local four-fermi operators by const...
I solve a quantum chain whose Hamiltonian is comprised solely of local four-fermi operators by const...
We investigate the interplay between frustration and zero-point quantum fluctuations in the ground s...
The concept of geometrical frustration has led to rich insights into condensed matter physics, espec...
The concept of geometrical frustration has led to rich insights into condensed matter physics, espec...
Sensitivity to noise makes most of the current quantum computing schemes prone to error and nonscala...
We study the decoding transition for quantum error correcting codes with the help of a mapping to ra...
In this paper we analyze the ground state phase diagram of a class of fermionic Hamiltonians by look...
We study the decoding transition for quantum error correcting codes with the help of a mapping to ra...
We study the decoding transition for quantum error correcting codes with the help of a mapping to ra...
Mapping the decoding of quantum error correcting (QEC) codes to classical disordered statistical mec...
The study of the properties of quantum mechanical systems of many particles occupies a central role ...
The study of the properties of quantum mechanical systems of many particles occupies a central role ...
Mapping the decoding of quantum error correcting (QEC) codes to classical disordered statistical mec...
As the beginning of the age of quantum supremacy comes closer, researches have been focusing on how ...
I solve a quantum chain whose Hamiltonian is comprised solely of local four-fermi operators by const...
I solve a quantum chain whose Hamiltonian is comprised solely of local four-fermi operators by const...
We investigate the interplay between frustration and zero-point quantum fluctuations in the ground s...
The concept of geometrical frustration has led to rich insights into condensed matter physics, espec...
The concept of geometrical frustration has led to rich insights into condensed matter physics, espec...
Sensitivity to noise makes most of the current quantum computing schemes prone to error and nonscala...
We study the decoding transition for quantum error correcting codes with the help of a mapping to ra...
In this paper we analyze the ground state phase diagram of a class of fermionic Hamiltonians by look...
We study the decoding transition for quantum error correcting codes with the help of a mapping to ra...
We study the decoding transition for quantum error correcting codes with the help of a mapping to ra...
Mapping the decoding of quantum error correcting (QEC) codes to classical disordered statistical mec...
The study of the properties of quantum mechanical systems of many particles occupies a central role ...
The study of the properties of quantum mechanical systems of many particles occupies a central role ...
Mapping the decoding of quantum error correcting (QEC) codes to classical disordered statistical mec...
As the beginning of the age of quantum supremacy comes closer, researches have been focusing on how ...