Compiling quantum algorithms for near-term quantum computers (accounting for connectivity and native gate alphabets) is a major challenge that has received significant attention both by industry and academia. Avoiding the exponential overhead of classical simulation of quantum dynamics will allow compilation of larger algorithms, and a strategy for this is to evaluate an algorithm's cost on a quantum computer. To this end, we propose a variational hybrid quantum-classical algorithm called quantum-assisted quantum compiling (QAQC). In QAQC, we use the overlap between a target unitary $U$ and a trainable unitary $V$ as the cost function to be evaluated on the quantum computer. More precisely, to ensure that QAQC scales well with problem size,...
Building a quantum computer that surpasses the computational power of its classical counterpart is a...
Building a quantum computer that surpasses the computational power of its classical counterpart is a...
Building a quantum computer that surpasses the computational power of its classical counterpart is a...
Quantum computers can solve certain problems much faster than classical computers. However, in order...
Practical realizations of quantum computers are poised to deliver outstanding computational capabili...
Before executing a quantum algorithm, one must first decompose the algorithm into machine-level inst...
A quantum computer consists of a set of quantum bits upon which operations called gates are applied ...
Quantum Approximation Optimization Algorithm (QAOA) is a highly advocated variational algorithm for ...
Simulating quantum systems is one of the most important potential applications of quantum computers....
It's been a little more than 40 years since researchers first suggested exploiting quantum physics t...
In this thesis, we aim to answer one research question: What is the algorithmic role of classical co...
In this thesis, we aim to answer one research question: What is the algorithmic role of classical co...
Computationally expensive applications, including machine learning, chemical simulations, and financ...
Computationally expensive applications, including machine learning, chemical simulations, and financ...
Over the last decade, Quantum Computing hardware has rapidly developed and become a very intriguing,...
Building a quantum computer that surpasses the computational power of its classical counterpart is a...
Building a quantum computer that surpasses the computational power of its classical counterpart is a...
Building a quantum computer that surpasses the computational power of its classical counterpart is a...
Quantum computers can solve certain problems much faster than classical computers. However, in order...
Practical realizations of quantum computers are poised to deliver outstanding computational capabili...
Before executing a quantum algorithm, one must first decompose the algorithm into machine-level inst...
A quantum computer consists of a set of quantum bits upon which operations called gates are applied ...
Quantum Approximation Optimization Algorithm (QAOA) is a highly advocated variational algorithm for ...
Simulating quantum systems is one of the most important potential applications of quantum computers....
It's been a little more than 40 years since researchers first suggested exploiting quantum physics t...
In this thesis, we aim to answer one research question: What is the algorithmic role of classical co...
In this thesis, we aim to answer one research question: What is the algorithmic role of classical co...
Computationally expensive applications, including machine learning, chemical simulations, and financ...
Computationally expensive applications, including machine learning, chemical simulations, and financ...
Over the last decade, Quantum Computing hardware has rapidly developed and become a very intriguing,...
Building a quantum computer that surpasses the computational power of its classical counterpart is a...
Building a quantum computer that surpasses the computational power of its classical counterpart is a...
Building a quantum computer that surpasses the computational power of its classical counterpart is a...