Surface codes describe quantum memory stored as a global property of a surface cellulated by interacting spins. The state space is fixed by a complete set of quasi-local stabilizer operators and the code dimension depends on the first homology group of the surface complex. These code states can be actively stabilized by measurements or, alternatively, can be prepared by cooling to the ground subspace of a quasi-local spin Hamiltonian. In the case of spin-1/2 (qubit) lattices, such ground states have been proposed as topologically protected memory for qubits. We extend these constructions to lattices or more generally cell complexes with qudits, either of prime level or of level $d^\ell$ for $d$ prime and $\ell \geq 0$, and therefore under t...
Two-level quantum systems, qubits, are not the only basis for quantum computation. Advantages exist ...
We present a family of non-Calderbank-Shor-Steane quantum error-correcting code consisting of geomet...
We present a family of non-Calderbank-Shor-Steane quantum error-correcting code consisting of geomet...
We analyze surface codes, the topological quantum error-correcting codes introduced by Kitaev. In th...
An economy of scale is found when storing many qubits in one highly entangled block of a topological...
The basic building block of quantum computation is the qubit, a system with two (nearly) degenerate...
The basic building block of quantum computation is the qubit, a system with two (nearly) degenerate...
dissertationThe subject of this dissertation is the presentation of a surface code, the string-net s...
It has long been known that long-ranged entangled topological phases can be exploited to protect qua...
We introduce an exactly solvable model of interacting Majorana fermions realizing Z[subscript 2] top...
As the beginning of the age of quantum supremacy comes closer, researches have been focusing on how ...
As the beginning of the age of quantum supremacy comes closer, researches have been focusing on how ...
Surface codes–leading candidates for quantum error correction (QEC)–and entanglement phases–a key no...
Topological quantum error-correcting codes are a family of stabilizer codes that are built using a l...
Developing quantum systems which are robust against noise are of prime importance to the realisation...
Two-level quantum systems, qubits, are not the only basis for quantum computation. Advantages exist ...
We present a family of non-Calderbank-Shor-Steane quantum error-correcting code consisting of geomet...
We present a family of non-Calderbank-Shor-Steane quantum error-correcting code consisting of geomet...
We analyze surface codes, the topological quantum error-correcting codes introduced by Kitaev. In th...
An economy of scale is found when storing many qubits in one highly entangled block of a topological...
The basic building block of quantum computation is the qubit, a system with two (nearly) degenerate...
The basic building block of quantum computation is the qubit, a system with two (nearly) degenerate...
dissertationThe subject of this dissertation is the presentation of a surface code, the string-net s...
It has long been known that long-ranged entangled topological phases can be exploited to protect qua...
We introduce an exactly solvable model of interacting Majorana fermions realizing Z[subscript 2] top...
As the beginning of the age of quantum supremacy comes closer, researches have been focusing on how ...
As the beginning of the age of quantum supremacy comes closer, researches have been focusing on how ...
Surface codes–leading candidates for quantum error correction (QEC)–and entanglement phases–a key no...
Topological quantum error-correcting codes are a family of stabilizer codes that are built using a l...
Developing quantum systems which are robust against noise are of prime importance to the realisation...
Two-level quantum systems, qubits, are not the only basis for quantum computation. Advantages exist ...
We present a family of non-Calderbank-Shor-Steane quantum error-correcting code consisting of geomet...
We present a family of non-Calderbank-Shor-Steane quantum error-correcting code consisting of geomet...