The traditional method for computation in either the surface code or in the Raussendorf model is the creation of holes or “defects” within the encoded lattice of qubits that are manipulated via topological braiding to enact logic gates. However, this is not the only way to achieve universal, fault-tolerant computation. In this work, we focus on the lattice surgery representation, which realizes transversal logic operations without destroying the intrinsic 2D nearest-neighbor properties of the braid-based surface code and achieves universality without defects and braid-based logic. For both techniques there are open questions regarding the compilation and resource optimization of quantum circuits. Optimization in braid-based logic is proving...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
A leading choice of error correction for scalable quantum computing is the surface code with lattice...
Abstract—Topological quantum computing has recently proven itself to be a powerful computational mod...
© 2017, The Author(s). The traditional method for computation in either the surface code or in the R...
© 2018 IOP Publishing Ltd. Lattice surgery is a method to perform quantum computation fault-tolerant...
Lattice surgery is a measurement-based technique for performing fault-tolerant quantum computation i...
Abstract. In recent years, surface codes have become the preferred method for quantum error correcti...
Abstract—Topological quantum computing has recently proven itself to be a very powerful model when c...
The large-scale execution of quantum algorithms requires basic quantum operations to be implemented ...
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...
Quantum error correction (QEC) and fault-tolerant (FT) mechanisms are essential for reliable quantum...
A leading choice of error correction for scalable quantum computing is the surface code with lattice...
Our project, the Lattice Surgery Compiler (LSC) aims to build a compiler that translates quantum pro...
We present a planar surface-code-based scheme for fault-tolerant quantum computation which eliminate...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
A leading choice of error correction for scalable quantum computing is the surface code with lattice...
Abstract—Topological quantum computing has recently proven itself to be a powerful computational mod...
© 2017, The Author(s). The traditional method for computation in either the surface code or in the R...
© 2018 IOP Publishing Ltd. Lattice surgery is a method to perform quantum computation fault-tolerant...
Lattice surgery is a measurement-based technique for performing fault-tolerant quantum computation i...
Abstract. In recent years, surface codes have become the preferred method for quantum error correcti...
Abstract—Topological quantum computing has recently proven itself to be a very powerful model when c...
The large-scale execution of quantum algorithms requires basic quantum operations to be implemented ...
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...
Quantum error correction (QEC) and fault-tolerant (FT) mechanisms are essential for reliable quantum...
A leading choice of error correction for scalable quantum computing is the surface code with lattice...
Our project, the Lattice Surgery Compiler (LSC) aims to build a compiler that translates quantum pro...
We present a planar surface-code-based scheme for fault-tolerant quantum computation which eliminate...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
A leading choice of error correction for scalable quantum computing is the surface code with lattice...
Abstract—Topological quantum computing has recently proven itself to be a powerful computational mod...