The difficulty of simulating quantum systems, well known to quantum chemists, prompted the idea of quantum computation. One can avoid the steep scaling associated with the exact simulation of increasingly large quan- tum systems on conventional computers, by mapping the quantum system to another, more controllable one. In this review, we discuss to what extent the ideas in quantum computation, now a well-established field, have been ap- plied to chemical problems. We describe algorithms that achieve significant advantages for the electronic-structure problem, the simulation of chemical dynamics, protein folding, and other tasks. Although theory is still ahead of experiment, we outline recent advances that have led to the first chemical calc...
Exact first-principles calculations of molecular properties are currently intractable because their ...
Exact first-principles calculations of molecular properties are currently intractable because their ...
Classical algorithms that simulate the electronic and vibrational structure of atoms and molecules a...
One of the most promising suggested applications of quantum computing is solving classically intract...
Since its introduction one decade ago, the quantum algorithm for chemistry has been among the most a...
As we begin to reach the limits of classical computing, quantum computing has emerged as a technolog...
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...
As we begin to reach the limits of classical computing, quantum computing has emerged as a technolog...
As we begin to reach the limits of classical computing, quantum computing has emerged as a technolog...
The calculation time for the energy of atoms and molecules scales exponentially with system size on ...
The major goals of quantum chemistry include increasing the accuracy of the results for small molecu...
Exact first-principles calculations of molecular properties are currently intractable because their ...
Exact first-principles calculations of molecular properties are currently intractable because their ...
Exact first-principles calculations of molecular properties are currently intractable because their ...
Exact first-principles calculations of molecular properties are currently intractable because their ...
Exact first-principles calculations of molecular properties are currently intractable because their ...
Classical algorithms that simulate the electronic and vibrational structure of atoms and molecules a...
One of the most promising suggested applications of quantum computing is solving classically intract...
Since its introduction one decade ago, the quantum algorithm for chemistry has been among the most a...
As we begin to reach the limits of classical computing, quantum computing has emerged as a technolog...
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...
As we begin to reach the limits of classical computing, quantum computing has emerged as a technolog...
As we begin to reach the limits of classical computing, quantum computing has emerged as a technolog...
The calculation time for the energy of atoms and molecules scales exponentially with system size on ...
The major goals of quantum chemistry include increasing the accuracy of the results for small molecu...
Exact first-principles calculations of molecular properties are currently intractable because their ...
Exact first-principles calculations of molecular properties are currently intractable because their ...
Exact first-principles calculations of molecular properties are currently intractable because their ...
Exact first-principles calculations of molecular properties are currently intractable because their ...
Exact first-principles calculations of molecular properties are currently intractable because their ...
Classical algorithms that simulate the electronic and vibrational structure of atoms and molecules a...