Semiclassical instanton theory is a form of quantum transition-state theory which can be applied to the computation of thermal reaction rates in complex molecular systems including quantum tunneling effects. There have been a number of attempts to extend the theory to treat microcanonical rates. However, the previous formulations are either computationally unfeasible for large systems due to an explicit sum over states or they involve extra approximations, which make them less reliable. We propose a robust and practical microcanonical formulation called density-of-states instanton theory, which avoids the sum over states altogether. In line with the semiclassical approximations inherent to the instanton approach, we employ the stationary-pha...
The calculation of thermal reaction rate constants is a central problem in theoretical chemistry, an...
The calculation of thermal reaction rate constants is a central problem in theoretical chemistry, an...
The instanton method obtains approximate tunneling rates from the minimum-action path (known as the ...
Semiclassical instanton theory is used to study the quantum effects of tunnelling and delocalization...
A quantum mechanical theory for chemical reaction rates is presented which is modeled after the [sem...
The instanton method obtains approximate tunneling rates from the minimum-action path (known as the ...
The instanton method obtains approximate tunneling rates from the minimum-action path (known as the ...
The instanton method obtains approximate tunneling rates from the minimum-action path (known as the ...
The instanton method obtains approximate tunneling rates from the minimum-action path (known as the ...
The instanton method obtains approximate tunneling rates from the minimum-action path (known as the ...
The instanton method obtains approximate tunneling rates from the minimum-action path (known as the ...
A simple method to find the instanton trajectories is developed. This method does not employ any app...
The instanton method obtains approximate tunneling rates from the minimum-action path (known as the ...
We explore the relation between the quantum and semiclassical instanton approximations for the react...
We explore the relation between the quantum and semiclassical instanton approximations for the react...
The calculation of thermal reaction rate constants is a central problem in theoretical chemistry, an...
The calculation of thermal reaction rate constants is a central problem in theoretical chemistry, an...
The instanton method obtains approximate tunneling rates from the minimum-action path (known as the ...
Semiclassical instanton theory is used to study the quantum effects of tunnelling and delocalization...
A quantum mechanical theory for chemical reaction rates is presented which is modeled after the [sem...
The instanton method obtains approximate tunneling rates from the minimum-action path (known as the ...
The instanton method obtains approximate tunneling rates from the minimum-action path (known as the ...
The instanton method obtains approximate tunneling rates from the minimum-action path (known as the ...
The instanton method obtains approximate tunneling rates from the minimum-action path (known as the ...
The instanton method obtains approximate tunneling rates from the minimum-action path (known as the ...
The instanton method obtains approximate tunneling rates from the minimum-action path (known as the ...
A simple method to find the instanton trajectories is developed. This method does not employ any app...
The instanton method obtains approximate tunneling rates from the minimum-action path (known as the ...
We explore the relation between the quantum and semiclassical instanton approximations for the react...
We explore the relation between the quantum and semiclassical instanton approximations for the react...
The calculation of thermal reaction rate constants is a central problem in theoretical chemistry, an...
The calculation of thermal reaction rate constants is a central problem in theoretical chemistry, an...
The instanton method obtains approximate tunneling rates from the minimum-action path (known as the ...