The concrete realization of topological quantum computing using low-dimensional quasiparticles, known as anyons, remains one of the important challenges of quantum computing. A topological quantum computing platform promises to deliver more robust qubits with additional hardware-level protection against errors that could lead to the desired large-scale quantum computation. We propose quasicrystal materials as such a natural platform and show that they exhibit anyonic behavior that can be used for topological quantum computing. Different from anyons, quasicrystals are already implemented in laboratories. In particular, we study the correspondence between the fusion Hilbert spaces of the simplest non-abelian anyon, the Fibonacci anyons, and t...
We examine how best to design qubits for use in topological quantum computation. These qubits are t...
A method for compiling quantum algorithms into specific braiding patterns for nonabelian quasipartic...
Topological quantum computation started as a niche area of research aimed at employing particles wit...
This review presents an entry-level introduction to topological quantum computation -- quantum comp...
A quantum computer can perform exponentially faster than its classical counterpart. It works on the ...
Quantum computation is a proposed model of computation that applies quantum mechanics to perform inf...
Topological quantum computation (TQC) is one of the most striking architectures that can realize fau...
Topological quantum computers promise a fault tolerant means to perform quantum computation. Topolog...
Non-Abelian anyons promise to reveal spectacular features of quantum mechanics that could ultimately...
A quantum computer can perform exponentially faster than its classical counterpart. It works on the ...
The theory of quantum computation can be constructed from the abstract study of anyonic systems. In ...
Anyons are quasiparticles that may be realized in two dimensional systems. They come in two types, t...
A method for compiling quantum algorithms into specific braiding patterns for non-Abelian quasiparti...
Topological Quantum Computation is based on the existence of two-dimensional particles called anyons...
A topological quantum computer should allow intrinsically fault-tolerant quantum compu-tation, but t...
We examine how best to design qubits for use in topological quantum computation. These qubits are t...
A method for compiling quantum algorithms into specific braiding patterns for nonabelian quasipartic...
Topological quantum computation started as a niche area of research aimed at employing particles wit...
This review presents an entry-level introduction to topological quantum computation -- quantum comp...
A quantum computer can perform exponentially faster than its classical counterpart. It works on the ...
Quantum computation is a proposed model of computation that applies quantum mechanics to perform inf...
Topological quantum computation (TQC) is one of the most striking architectures that can realize fau...
Topological quantum computers promise a fault tolerant means to perform quantum computation. Topolog...
Non-Abelian anyons promise to reveal spectacular features of quantum mechanics that could ultimately...
A quantum computer can perform exponentially faster than its classical counterpart. It works on the ...
The theory of quantum computation can be constructed from the abstract study of anyonic systems. In ...
Anyons are quasiparticles that may be realized in two dimensional systems. They come in two types, t...
A method for compiling quantum algorithms into specific braiding patterns for non-Abelian quasiparti...
Topological Quantum Computation is based on the existence of two-dimensional particles called anyons...
A topological quantum computer should allow intrinsically fault-tolerant quantum compu-tation, but t...
We examine how best to design qubits for use in topological quantum computation. These qubits are t...
A method for compiling quantum algorithms into specific braiding patterns for nonabelian quasipartic...
Topological quantum computation started as a niche area of research aimed at employing particles wit...