Is the notion of a quantum computer (QC) resilient to thermal noise unphysical? We address this question from a constructive perspective and show that local quantum Hamiltonian models provide self-correcting QCs. To this end, we first give a sufficient condition on the connectedness of excitations for a stabilizer code model to be a self-correcting quantum memory. We then study the two main examples of topological stabilizer codes in arbitrary dimensions and establish their self-correcting capabilities. Also, we address the transversality properties of topological color codes, showing that six-dimensional color codes provide a self-correcting model that allows the transversal and local implementation of a universal set of operations in seve...
This book presents a self-consistent review of quantum computation with topological quantum codes. T...
The most general method for encoding quantum information is not to encode the information into a sub...
Abstract. Quantum error correction provides a fertile context for exploring the interplay of feedbac...
Is the notion of a quantum computer (QC) resilient to thermal noise unphysical? We address this ques...
Thesis (Ph.D.)--University of Washington, 2015This thesis presents a model of self-correcting quantu...
A big open question in the quantum information theory concerns the feasibility of a self-correcting ...
We examine two proposals for marginally-self-correcting quantum memory: the cubic code by Haah and t...
Recently, it has become apparent that the thermal stability of topologically ordered systems at fini...
We explore the feasibility of a quantum self-correcting memory based on 3D spin Hamiltonians with to...
We propose a family of local CSS stabilizer codes as possible candidates for self-correcting quantum...
To use quantum systems for technological applications we first need to preserve their coherence for ...
This dissertation is the collection of a progressive research on the topic of topological quantum co...
This thesis addresses whether it is possible to build a robust memory device for quantum information...
This thesis is devoted to studying a class of quantum error-correcting codes — topological quantum c...
Quantum computing sounds like something out of a science-fiction novel. If we can exert control ove...
This book presents a self-consistent review of quantum computation with topological quantum codes. T...
The most general method for encoding quantum information is not to encode the information into a sub...
Abstract. Quantum error correction provides a fertile context for exploring the interplay of feedbac...
Is the notion of a quantum computer (QC) resilient to thermal noise unphysical? We address this ques...
Thesis (Ph.D.)--University of Washington, 2015This thesis presents a model of self-correcting quantu...
A big open question in the quantum information theory concerns the feasibility of a self-correcting ...
We examine two proposals for marginally-self-correcting quantum memory: the cubic code by Haah and t...
Recently, it has become apparent that the thermal stability of topologically ordered systems at fini...
We explore the feasibility of a quantum self-correcting memory based on 3D spin Hamiltonians with to...
We propose a family of local CSS stabilizer codes as possible candidates for self-correcting quantum...
To use quantum systems for technological applications we first need to preserve their coherence for ...
This dissertation is the collection of a progressive research on the topic of topological quantum co...
This thesis addresses whether it is possible to build a robust memory device for quantum information...
This thesis is devoted to studying a class of quantum error-correcting codes — topological quantum c...
Quantum computing sounds like something out of a science-fiction novel. If we can exert control ove...
This book presents a self-consistent review of quantum computation with topological quantum codes. T...
The most general method for encoding quantum information is not to encode the information into a sub...
Abstract. Quantum error correction provides a fertile context for exploring the interplay of feedbac...