Since its introduction one decade ago, the quantum algorithm for chemistry has been among the most anticipated applications of quantum computers. However, as the age of industrial quantum technology dawns, so has the realization that even “polynomial” resource overheads are often prohibitive. There remains a large gap between the capabilities of existing hardware and the resources required to quantum compute classically intractable problems in chemistry. The primary contribution of this dissertation is to take meaningful steps towards reducing the costs of three approaches to quantum computing chemistry. First, we discuss how chemistry problems can be embedded in Hamiltonians suitable for commercially manufactured quantum annealing machines...
Practical challenges in simulating quantum systems on classical computers have been widely recognize...
We report the first electronic structure calculation performed on a quantum computer without exponen...
We present a quantum algorithm for the simulation of molecular systems that is asymptotically more e...
The difficulty of simulating quantum systems, well known to quantum chemists, prompted the idea of q...
The design of new materials and chemicals derived entirely from computation has long been a goal of ...
As we begin to reach the limits of classical computing, quantum computing has emerged as a technolog...
One of the most promising suggested applications of quantum computing is solving classically intract...
Classical algorithms that simulate the electronic and vibrational structure of atoms and molecules a...
Conventional computers are invaluable tools for analysing and predicting the behaviour of the world ...
We show how to apply the quantum adiabatic algorithm directly to the quantum computation of molecula...
Simulating quantum mechanical evolutions in general is difficult on classical computers because the ...
The blooming of quantum computer hardware provokes enormous enthusiasm seeking for applications in v...
The quantum computation of electronic energies can break the curse of dimensionality that plagues ma...
This dissertation concerns the development of quantum computing algorithms for solving electronic st...
The blooming of quantum computer hardware provokes enormous enthusiasm seeking for applications in v...
Practical challenges in simulating quantum systems on classical computers have been widely recognize...
We report the first electronic structure calculation performed on a quantum computer without exponen...
We present a quantum algorithm for the simulation of molecular systems that is asymptotically more e...
The difficulty of simulating quantum systems, well known to quantum chemists, prompted the idea of q...
The design of new materials and chemicals derived entirely from computation has long been a goal of ...
As we begin to reach the limits of classical computing, quantum computing has emerged as a technolog...
One of the most promising suggested applications of quantum computing is solving classically intract...
Classical algorithms that simulate the electronic and vibrational structure of atoms and molecules a...
Conventional computers are invaluable tools for analysing and predicting the behaviour of the world ...
We show how to apply the quantum adiabatic algorithm directly to the quantum computation of molecula...
Simulating quantum mechanical evolutions in general is difficult on classical computers because the ...
The blooming of quantum computer hardware provokes enormous enthusiasm seeking for applications in v...
The quantum computation of electronic energies can break the curse of dimensionality that plagues ma...
This dissertation concerns the development of quantum computing algorithms for solving electronic st...
The blooming of quantum computer hardware provokes enormous enthusiasm seeking for applications in v...
Practical challenges in simulating quantum systems on classical computers have been widely recognize...
We report the first electronic structure calculation performed on a quantum computer without exponen...
We present a quantum algorithm for the simulation of molecular systems that is asymptotically more e...