Difference between revisions of "Simple flow.m"
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==Examples== | ==Examples== | ||
| − | Below is a frame from the video produced by examples/microfluidics/plain_flow.m example file. | + | Below is a frame from the video produced by examples/microfluidics/plain_flow.m example file, illustrating parabolic flow on a non-uniform mesh representing a microfluidic chip. |
[[File:plain_flow_paraqchip.png]] | [[File:plain_flow_paraqchip.png]] | ||
Revision as of 14:30, 26 July 2023
Simple forward evolution experiment for the microfluidics module; trajectory is returned. This sequence must be called from the meshflow.m context, which would provide H, R, K, G, and F. Because gradients are not being used, the G input is ignored.
Syntax
traj=simple_flow(spin_system,parameters,H,R,K,~,F)
Arguments
parameters.npoints - number of points in
the trajectory
parameters.rho0 - initial state in Fokker-
Planck space
parameters.dt - trajectory time step
Outputs
traj - trajectory in the Fokker-Planck space
Examples
Below is a frame from the video produced by examples/microfluidics/plain_flow.m example file, illustrating parabolic flow on a non-uniform mesh representing a microfluidic chip.
Notes
To convert Fokker-Planck space trajectory into R3 or Liouville space, use fpl2phan.m and fpl2rho.m functions.
See also
Version 2.8, authors: Ilya Kuprov
