A novel parallel hybrid quantum-classical algorithm for the solution of the quantum-chemical ground-state energy problem on gate-based quantum computers is presented. This approach is based on the reduced density-matrix functional theory (RDMFT) formulation of the electronic structure problem. For that purpose, the density-matrix functional of the full system is decomposed into an indirectly coupled sum of density-matrix functionals for all its subsystems using the adaptive cluster approximation to RDMFT. The approximations involved in the decomposition and the adaptive cluster approximation itself can be systematically converged to the exact result. The solutions for the density-matrix functionals of the effective subsystems involves a con...
The accurate and efficient simulation of many body systems has been a long-standing challenge for qu...
We report the first electronic structure calculation performed on a quantum computer without exponen...
The accurate and efficient simulation of many body systems has been a long-standing challenge for qu...
As we begin to reach the limits of classical computing, quantum computing has emerged as a technolog...
Owing to the computational complexity of electronic structure algorithms running on classical digita...
Chemical and molecular phenomena are central to understanding the composition of the physical univer...
Quantum computers exist today that are capable of performing calculations that challenge the largest...
The design of new materials and chemicals derived entirely from computation has long been a goal of ...
Quantum computers exist today that are capable of performing calculations that challenge the largest...
This thesis, whose topic is quantum chemistry algorithms, is made in the context of the change in pa...
Recent improvements in the control of quantum systems make it seem feasible to finally build a quant...
Quantum chemistry calculations of large, strongly correlated systems are typically limited by the co...
Conventional computers are invaluable tools for analysing and predicting the behaviour of the world ...
Quantum chemistry calculations of large, strongly correlated systems are typically limited by the co...
Quantum computational chemistry (QCC) is the use of quantum computers to solve problems in computati...
The accurate and efficient simulation of many body systems has been a long-standing challenge for qu...
We report the first electronic structure calculation performed on a quantum computer without exponen...
The accurate and efficient simulation of many body systems has been a long-standing challenge for qu...
As we begin to reach the limits of classical computing, quantum computing has emerged as a technolog...
Owing to the computational complexity of electronic structure algorithms running on classical digita...
Chemical and molecular phenomena are central to understanding the composition of the physical univer...
Quantum computers exist today that are capable of performing calculations that challenge the largest...
The design of new materials and chemicals derived entirely from computation has long been a goal of ...
Quantum computers exist today that are capable of performing calculations that challenge the largest...
This thesis, whose topic is quantum chemistry algorithms, is made in the context of the change in pa...
Recent improvements in the control of quantum systems make it seem feasible to finally build a quant...
Quantum chemistry calculations of large, strongly correlated systems are typically limited by the co...
Conventional computers are invaluable tools for analysing and predicting the behaviour of the world ...
Quantum chemistry calculations of large, strongly correlated systems are typically limited by the co...
Quantum computational chemistry (QCC) is the use of quantum computers to solve problems in computati...
The accurate and efficient simulation of many body systems has been a long-standing challenge for qu...
We report the first electronic structure calculation performed on a quantum computer without exponen...
The accurate and efficient simulation of many body systems has been a long-standing challenge for qu...