Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Computer Science, 2019Cataloged from PDF version of thesis.Includes bibliographical references (pages 199-208).The race is on to build the first quantum computer, and although there are many groups working towards this goal, their quantum devices have certain architectural properties in common. First, the devices tend to be built on qubits arranged in a 2D grid, with gates between neighboring qubits. Second, we expect Clifford gates will be an important gate set because of their close connection to stabilizer codes (being both necessary to encode qubits, and easily implemented on encoded logical qubits). Finally, the limited lifespan of qubits (d...
Clifford gates are a winsome class of quantum operations combining mathematical elegance with physic...
. We exhibit some simple gadgets useful in designing shallow parallel circuits for quantum algorithm...
Quantum computers offer the potential to extend our abilities to tackle computational problems in fi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mathematics, 2019Cataloged from...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
We present a new algorithm for classical simulation of quantum circuits over the Clifford+T gate set...
We present a new algorithm for classical simulation of quantum circuits over the Clifford+T gate set...
In recent years, programmable quantum devices have reached sizes and complexities which put them out...
Includes bibliographical references (pages 36-37)Quantum computers will be capable of new modes of c...
The quantum circuit model is the most widely used model of quantum computation. It provides both a f...
We define and construct efficient depth universal and almost size universal quantum circuits. Such c...
Recently, Bravyi and König have shown that there is a trade-off between fault-tolerantly imple-ment...
We define and construct efficient depth universal and almost size universal quantum circuits. Such c...
We argue that there exist quantum computations that can be carried out in constant depth that cannot...
We consider the possibility of adding noise to a quantum circuit to make it efficiently simulatable ...
Clifford gates are a winsome class of quantum operations combining mathematical elegance with physic...
. We exhibit some simple gadgets useful in designing shallow parallel circuits for quantum algorithm...
Quantum computers offer the potential to extend our abilities to tackle computational problems in fi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mathematics, 2019Cataloged from...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
We present a new algorithm for classical simulation of quantum circuits over the Clifford+T gate set...
We present a new algorithm for classical simulation of quantum circuits over the Clifford+T gate set...
In recent years, programmable quantum devices have reached sizes and complexities which put them out...
Includes bibliographical references (pages 36-37)Quantum computers will be capable of new modes of c...
The quantum circuit model is the most widely used model of quantum computation. It provides both a f...
We define and construct efficient depth universal and almost size universal quantum circuits. Such c...
Recently, Bravyi and König have shown that there is a trade-off between fault-tolerantly imple-ment...
We define and construct efficient depth universal and almost size universal quantum circuits. Such c...
We argue that there exist quantum computations that can be carried out in constant depth that cannot...
We consider the possibility of adding noise to a quantum circuit to make it efficiently simulatable ...
Clifford gates are a winsome class of quantum operations combining mathematical elegance with physic...
. We exhibit some simple gadgets useful in designing shallow parallel circuits for quantum algorithm...
Quantum computers offer the potential to extend our abilities to tackle computational problems in fi...