gmx - molecular dynamics simulation suite
gmx [-[no]h] [-[no]quiet] [-[no]version] [-[no]copyright] [-nice <int>]
[-[no]backup]
GROMACS is a full-featured suite of programs to perform molecular
dynamics simulations, i.e., to simulate the behavior of systems with
hundreds to millions of particles using Newtonian equations of motion. It is
primarily used for research on proteins, lipids, and polymers, but can be
applied to a wide variety of chemical and biological research questions.
Other options:
- -[no]h (no)
- Print help and quit
- -[no]quiet (no)
- Do not print common startup info or quotes
- -[no]version (no)
- Print extended version information and quit
- -[no]copyright (no)
- Print copyright information on startup
- -nice <int>
(19)
- Set the nicelevel (default depends on command)
- -[no]backup (yes)
- Write backups if output files exist
The following commands are available. Please refer to their
individual man pages or gmx help <command> for further
details.
- gmx-nmtraj(1)
- Generate a virtual oscillating trajectory from an eigenvector
- gmx-enemat(1)
- Extract an energy matrix from an energy file
- gmx-energy(1)
- Writes energies to xvg files and display averages
- gmx-mdrun(1)
- (Re)calculate energies for trajectory frames with -rerun
- gmx-gyrate(1)
- Calculate the radius of gyration
- gmx-polystat(1)
- Calculate static properties of polymers
- gmx-rdf(1)
- Calculate radial distribution functions
- gmx-rotacf(1)
- Calculate the rotational correlation function for molecules
- gmx-rotmat(1)
- Plot the rotation matrix for fitting to a reference structure
- gmx-sans(1)
- Compute small angle neutron scattering spectra
- gmx-saxs(1)
- Compute small angle X-ray scattering spectra
- gmx-traj(1)
- Plot x, v, f, box, temperature and rotational energy from
trajectories
- gmx-vanhove(1)
- Compute Van Hove displacement and correlation functions
- gmx-bar(1)
- Calculate free energy difference estimates through Bennett's acceptance
ratio
- gmx-current(1)
- Calculate dielectric constants and current autocorrelation function
- gmx-dos(1)
- Analyze density of states and properties based on that
- gmx-dyecoupl(1)
- Extract dye dynamics from trajectories
- gmx-principal(1)
- Calculate principal axes of inertia for a group of atoms
- gmx-tcaf(1)
- Calculate viscosities of liquids
- gmx-traj(1)
- Plot x, v, f, box, temperature and rotational energy from
trajectories
- gmx-vanhove(1)
- Compute Van Hove displacement and correlation functions
- gmx-velacc(1)
- Calculate velocity autocorrelation functions
- gmx-current(1)
- Calculate dielectric constants and current autocorrelation function
- gmx-dielectric(1)
- Calculate frequency dependent dielectric constants
- gmx-dipoles(1)
- Compute the total dipole plus fluctuations
- gmx-potential(1)
- Calculate the electrostatic potential across the box
- gmx-spol(1)
- Analyze solvent dipole orientation and polarization around solutes
- gmx-genion(1)
- Generate monoatomic ions on energetically favorable positions
2023, GROMACS development team