The standard approach to fault-tolerant quantum computation is to store information in a quantum error correction code, such as the surface code, and process information using a strategy that can be summarized as distill then synthesize. In the distill step, one performs several rounds of distillation to create high-fidelity logical qubits in a magic state. Each such magic state provides one good T gate. In the synthesize step, one seeks the optimal decomposition of an algorithm into a sequence of many T gates interleaved with Clifford gates. This gate-synthesis problem is well understood for multiqubit gates that do not use any Hadamards. We present an in-depth analysis of a unified framework that realizes one round of distillation and mul...
Magic state distillation is a fundamental technique for realizing fault-tolerant universal quantum c...
186 pagesThis thesis describes a variety of topics and techniques for building a scalable quantum co...
Magic state distillation is a resource intensive subroutine that consumes noisy input states to prod...
The leading paradigm for performing a computation on quantum memories can be encapsulated as distill...
For universal quantum computation, a major challenge to overcome for practical implementation is the...
We present an infinite family of protocols to distill magic states for $T$-gates that has a low spac...
In this work, we develop resource-theoretic approaches to study the non-stabilizer resources in faul...
Magic state distillation is one of the leading candidates for implementing universal fault-tolerant ...
Treating stabilizer operations as free, we establish lower bounds on the number of resource states, ...
© 2018 IEEE. Quantum computers have recently made great strides and are on a long-Term path towards ...
Leading approaches to fault-tolerant quantum computation dedicate a significant portion of the hardw...
International audienceA practical quantum computer must not merely store information, but also proce...
We propose a family of error-detecting stabilizer codes with an encoding rate of 1/3 that permit a t...
Given a gate set S universal for quantum computing, the problem of decomposing a unitary operator U ...
Fault-tolerant quantum computers compose elements of a discrete gate set in order to approximate a t...
Magic state distillation is a fundamental technique for realizing fault-tolerant universal quantum c...
186 pagesThis thesis describes a variety of topics and techniques for building a scalable quantum co...
Magic state distillation is a resource intensive subroutine that consumes noisy input states to prod...
The leading paradigm for performing a computation on quantum memories can be encapsulated as distill...
For universal quantum computation, a major challenge to overcome for practical implementation is the...
We present an infinite family of protocols to distill magic states for $T$-gates that has a low spac...
In this work, we develop resource-theoretic approaches to study the non-stabilizer resources in faul...
Magic state distillation is one of the leading candidates for implementing universal fault-tolerant ...
Treating stabilizer operations as free, we establish lower bounds on the number of resource states, ...
© 2018 IEEE. Quantum computers have recently made great strides and are on a long-Term path towards ...
Leading approaches to fault-tolerant quantum computation dedicate a significant portion of the hardw...
International audienceA practical quantum computer must not merely store information, but also proce...
We propose a family of error-detecting stabilizer codes with an encoding rate of 1/3 that permit a t...
Given a gate set S universal for quantum computing, the problem of decomposing a unitary operator U ...
Fault-tolerant quantum computers compose elements of a discrete gate set in order to approximate a t...
Magic state distillation is a fundamental technique for realizing fault-tolerant universal quantum c...
186 pagesThis thesis describes a variety of topics and techniques for building a scalable quantum co...
Magic state distillation is a resource intensive subroutine that consumes noisy input states to prod...