Difference between revisions of "Oper2bm.m"
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{{DISPLAYTITLE:oper2bm.m}} __NOTOC__ | {{DISPLAYTITLE:oper2bm.m}} __NOTOC__ | ||
| − | Bosonic monomial operator expansion of a user-specified | + | Bosonic monomial operator expansion of a user-specified square matrix. |
==Syntax== | ==Syntax== | ||
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[states,coeffs]=oper2bm(A) | [states,coeffs]=oper2bm(A) | ||
| − | == | + | ==Parameters== |
A - a square matrix | A - a square matrix | ||
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==See also== | ==See also== | ||
| − | + | [[enlev2bm.m]], [[boson_mono.m]], [[boson_ortho.m]], [[weyl.m]], [[kq2lin.m]], [[lin2kq.m]], [[bos2ist.m]], [[centrans.m]], [[ct2ist.m]], [[enlev2ist.m]], [[hamiltonian.m]], [[kinetics.m]], [[lindbladian.m]], [[oper2ist.m]], [[operator.m]], [[orientation.m]], [[propagator.m]], [[relaxation.m]], [[sin_tran.m]], [[Kernel_functions]] | |
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''Version 2.11, authors: [[Ilya Kuprov]]'' | ''Version 2.11, authors: [[Ilya Kuprov]]'' | ||
Latest revision as of 19:39, 6 June 2026
Bosonic monomial operator expansion of a user-specified square matrix.
Syntax
[states,coeffs]=oper2bm(A)
Parameters
A - a square matrix
Outputs
states - states, in the Spinach BM basis index-
ing convention, that contribute to the
operator in question; use lin2kq() fun-
ction to convert to K,Q bosonic monomi-
al indices
coeffs - coefficients with which the BMs enter
the linear combination
Examples
See examples in the Spinach distribution relevant to this function.
Notes
This page was generated from the function header in the Spinach repository.
See also
enlev2bm.m, boson_mono.m, boson_ortho.m, weyl.m, kq2lin.m, lin2kq.m, bos2ist.m, centrans.m, ct2ist.m, enlev2ist.m, hamiltonian.m, kinetics.m, lindbladian.m, oper2ist.m, operator.m, orientation.m, propagator.m, relaxation.m, sin_tran.m, Kernel_functions
Version 2.11, authors: Ilya Kuprov