In recent years, topological phases of matter have presented exciting new avenues to achieve scalable quantum computation. In this thesis, we investigate a class of quantum many-body spin models known as symmetry-protected topological (SPT) phases for use in quantum information processing and storage. We explore the fault-tolerant properties of SPT phases, and how they can be utilized in the design of a quantum computer. Of central importance in this thesis is the concept of quantum error-correction, which in addition to its importance in fault-tolerant quantum computation, is used to characterise the stability of topological phases at finite temperature. We begin with an introduction to quantum computation, quantum error correction, and to...
We consider ground states of quantum spin chains with symmetry-protected topological (SPT) order as ...
This book presents a self-consistent review of quantum computation with topological quantum codes. T...
This thesis is devoted to studying a class of quantum error-correcting codes — topological quantum c...
We address the question of whether symmetry-protected topological (SPT) order can persist at nonzero...
Developing quantum systems which are robust against noise are of prime importance to the realisation...
This thesis addresses whether it is possible to build a robust memory device for quantum information...
A self-correcting quantum memory can store and protect quantum information for a time that increases...
We analyze surface codes, the topological quantum error-correcting codes introduced by Kitaev. In th...
Topological quantum error-correcting codes are a family of stabilizer codes that are built using a l...
This thesis is a collection of ideas with the general goal of building, at least in the abstract, a ...
In this dissertation, we use numerical methods to study one dimensional symmetry protected topologic...
Thesis (Ph.D.)--University of Washington, 2021Classical computers have been instrumental to our unde...
We present the correspondence between symmetry-protected topological (SPT) phases and their anomalou...
While quantum computers can achieve dramatic speedups over the classical computers familiar to us, i...
We explore the feasibility of a quantum self-correcting memory based on 3D spin Hamiltonians with to...
We consider ground states of quantum spin chains with symmetry-protected topological (SPT) order as ...
This book presents a self-consistent review of quantum computation with topological quantum codes. T...
This thesis is devoted to studying a class of quantum error-correcting codes — topological quantum c...
We address the question of whether symmetry-protected topological (SPT) order can persist at nonzero...
Developing quantum systems which are robust against noise are of prime importance to the realisation...
This thesis addresses whether it is possible to build a robust memory device for quantum information...
A self-correcting quantum memory can store and protect quantum information for a time that increases...
We analyze surface codes, the topological quantum error-correcting codes introduced by Kitaev. In th...
Topological quantum error-correcting codes are a family of stabilizer codes that are built using a l...
This thesis is a collection of ideas with the general goal of building, at least in the abstract, a ...
In this dissertation, we use numerical methods to study one dimensional symmetry protected topologic...
Thesis (Ph.D.)--University of Washington, 2021Classical computers have been instrumental to our unde...
We present the correspondence between symmetry-protected topological (SPT) phases and their anomalou...
While quantum computers can achieve dramatic speedups over the classical computers familiar to us, i...
We explore the feasibility of a quantum self-correcting memory based on 3D spin Hamiltonians with to...
We consider ground states of quantum spin chains with symmetry-protected topological (SPT) order as ...
This book presents a self-consistent review of quantum computation with topological quantum codes. T...
This thesis is devoted to studying a class of quantum error-correcting codes — topological quantum c...