The surface code is currently the leading proposal to achieve fault-tolerant quantum computation. Among its strengths are the plethora of known ways in which fault-tolerant Clifford operations can be performed, namely, by deforming the topology of the surface, by the fusion and splitting of codes, and even by braiding engineered Majorana modes using twist defects. Here, we present a unified framework to describe these methods, which can be used to better compare different schemes and to facilitate the design of hybrid schemes. Our unification includes the identification of twist defects with the corners of the planar code. This identification enables us to perform single-qubit Clifford gates by exchanging the corners of the planar code via ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PD...
We establish a unified framework for Majorana-based fault-tolerant quantum computation with Majorana...
Color-code quantum computation seamlessly combines Majorana-based hardware with topological error co...
The surface code is currently the leading proposal to achieve fault-tolerant quantum computation. Am...
We present a planar surface-code-based scheme for fault-tolerant quantum computation which eliminate...
The surface code is one of the most successful approaches to topological quantum error-correction. I...
Majorana zero modes (MZMs) are promising candidates for topologically-protected quantum computing ha...
Quantum error correcting codes (QECCs) allow us to protect qubits from noise and are expected to be ...
Quantum error correcting codes (QECCs) allow us to protect qubits from noise and are expected to be ...
Abstract. In recent years, surface codes have become the preferred method for quantum error correcti...
The large-scale execution of quantum algorithms requires basic quantum operations to be implemented ...
The large-scale execution of quantum algorithms requires basic quantum operations to be implemented ...
International audienceThe large-scale execution of quantum algorithms requires basic quantum operati...
Given a quantum gate circuit, how does one execute it in a fault-tolerant architecture with as littl...
Given a quantum gate circuit, how does one execute it in a fault-tolerant architecture with as littl...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PD...
We establish a unified framework for Majorana-based fault-tolerant quantum computation with Majorana...
Color-code quantum computation seamlessly combines Majorana-based hardware with topological error co...
The surface code is currently the leading proposal to achieve fault-tolerant quantum computation. Am...
We present a planar surface-code-based scheme for fault-tolerant quantum computation which eliminate...
The surface code is one of the most successful approaches to topological quantum error-correction. I...
Majorana zero modes (MZMs) are promising candidates for topologically-protected quantum computing ha...
Quantum error correcting codes (QECCs) allow us to protect qubits from noise and are expected to be ...
Quantum error correcting codes (QECCs) allow us to protect qubits from noise and are expected to be ...
Abstract. In recent years, surface codes have become the preferred method for quantum error correcti...
The large-scale execution of quantum algorithms requires basic quantum operations to be implemented ...
The large-scale execution of quantum algorithms requires basic quantum operations to be implemented ...
International audienceThe large-scale execution of quantum algorithms requires basic quantum operati...
Given a quantum gate circuit, how does one execute it in a fault-tolerant architecture with as littl...
Given a quantum gate circuit, how does one execute it in a fault-tolerant architecture with as littl...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PD...
We establish a unified framework for Majorana-based fault-tolerant quantum computation with Majorana...
Color-code quantum computation seamlessly combines Majorana-based hardware with topological error co...