Difference between revisions of "Hp acquire.m"

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(Created page with "Standard pulse-acquire sequence with a hard pulse. The user must sup- ply the pulse operator, the pulse duration and the initial condition. Syntax: fid=hp_acquir...")
 
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Standard pulse-acquire sequence with a hard pulse. The user must sup-
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{{DISPLAYTITLE:hp_acquire.m}}
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ply the pulse operator, the pulse duration and the initial condition.
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Standard pulse-acquire sequence with a hard pulse. The user must supply the pulse operator, the pulse duration and the initial condition. Echo detection may optionally be used.
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Syntax:
 
  
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            fid=hp_acquire(spin_system,parameters,H,R,K)
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==Syntax==
  
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where fid is the free induction decay, H is the Hamiltonian matrix, R
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    fid=hp_acquire(spin_system,parameters,H,R,K)
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is the relaxation matrix and K is the chemical kinetics matrix. The
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following parameters are required:
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==Arguments==
  
 
     parameters.sweep              sweep width, Hz
 
     parameters.sweep              sweep width, Hz
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     parameters.npoints            number of points in the FID
 
     parameters.npoints            number of points in the FID
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     parameters.rho0              initial state
 
     parameters.rho0              initial state
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     parameters.coil              detection state
 
     parameters.coil              detection state
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     parameters.pulse_op          pulse operator
 
     parameters.pulse_op          pulse operator
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     parameters.pulse_angle        pulse angle, radians
 
     parameters.pulse_angle        pulse angle, radians
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     parameters.decouple          spins to decouple, e.g. {'15N','13C'}
 
     parameters.decouple          spins to decouple, e.g. {'15N','13C'}
 
                                   (sphten-liouv formalism only)
 
                                   (sphten-liouv formalism only)
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    parameters.echo_time          optional echo time for echo detection
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                                  (echo_time - pulse - echo_time - fid)
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    parameters.echo_oper          optional pulse operator for echo
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                                  detection
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    parameters.echo_angle        optional pulse angle for echo detection
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    H    - Hamiltonian matrix, received from context function
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    R    - relaxation superoperator, received from context function
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    K    - kinetics superoperator, received from context function
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==Outputs==
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    fid  - free induction decay as seen by the state specified
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            in parameters parameters.coil
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==See also==
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[[acquire.m]], [[sp_acquire.m]], [[cosy.m]], [[noesy.m]], [[hsqc.m]]
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''Version 2.2, authors: [[Luke Edwards]], [[Ilya Kuprov]]''

Revision as of 10:49, 22 August 2018

Standard pulse-acquire sequence with a hard pulse. The user must supply the pulse operator, the pulse duration and the initial condition. Echo detection may optionally be used.

Syntax

    fid=hp_acquire(spin_system,parameters,H,R,K)

Arguments

   parameters.sweep              sweep width, Hz

   parameters.npoints            number of points in the FID

   parameters.rho0               initial state

   parameters.coil               detection state

   parameters.pulse_op           pulse operator

   parameters.pulse_angle        pulse angle, radians

   parameters.decouple           spins to decouple, e.g. {'15N','13C'}
                                 (sphten-liouv formalism only)

   parameters.echo_time          optional echo time for echo detection
                                 (echo_time - pulse - echo_time - fid)

   parameters.echo_oper          optional pulse operator for echo
                                 detection

   parameters.echo_angle         optional pulse angle for echo detection

   H     - Hamiltonian matrix, received from context function

   R     - relaxation superoperator, received from context function

   K     - kinetics superoperator, received from context function

Outputs

   fid   - free induction decay as seen by the state specified
           in parameters parameters.coil

See also

acquire.m, sp_acquire.m, cosy.m, noesy.m, hsqc.m


Version 2.2, authors: Luke Edwards, Ilya Kuprov