Docs: Add overview of CLI utilities; optimisation TODO
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Overview of QPMS command line utilities
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=======================================
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The utilities are located in the `misc` directory. Run the
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utility with `-h` argument to get more info.
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Rectangular and square 2D lattices
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----------------------------------
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These scripts deal with simple 2D rectangular lattices,
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finite or infinite, one scatterer per unit cell.
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\f$ D_{2h} \f$ or \f$ D_{4h} \f$ symmetric adapted bases
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are used where applicable.
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### Finite lattices
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* `finiterectlat-modes.py`: Search for resonances using Beyn's algorithm.
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* `finiterectlat-scatter.py`: Plane wave scattering.
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* `finiterectlat-constant-driving.py`: Rectangular array response to
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a driving where a subset of particles are excited by basis VSWFs with the
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same phase.
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### Infinite lattices
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* `rectlat_simple_modes.py`: Search for lattice modes using Beyn's algorithm.
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* `infiniterectlat-k0realfreqsvd.py`:
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Evaluate the lattice mode problem singular values at the Γ point for a real frequency interval.
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Useful as a starting point in lattice mode search before using Beyn's algorithm.
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* `infiniterectlat-scatter.py`: Plane wave scattering.
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General 2D lattices
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-------------------
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### Infinite lattices
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These can contain several scatterers per unit cell. Symmetry adapted bases currently not implemented.
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* `lat2d_modes.py`: Search for lattice modes using Beyn's algorithm.
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* `lat2d_realfreqsvd.py`:
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Evaluate the lattice mode problem singular values at the Γ point for a real frequency interval.
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Useful as a starting point in lattice mode search before using Beyn's algorithm.
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4
Doxyfile
4
Doxyfile
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@ -753,7 +753,7 @@ WARN_LOGFILE =
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# spaces.
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# Note: If this tag is empty the current directory is searched.
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INPUT = qpms notes finite_systems.md README.md README.Triton.md finite_systems.md lattices.md TODO.md
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INPUT = qpms notes misc finite_systems.md CLIUTILS.md README.md README.Triton.md finite_systems.md lattices.md TODO.md
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# This tag can be used to specify the character encoding of the source files
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# that doxygen parses. Internally doxygen uses the UTF-8 encoding. Doxygen uses
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@ -1462,7 +1462,7 @@ MATHJAX_FORMAT = HTML-CSS
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# The default value is: http://cdn.mathjax.org/mathjax/latest.
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# This tag requires that the tag USE_MATHJAX is set to YES.
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MATHJAX_RELPATH = https://cdn.jsdelivr.net/npm/mathjax
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MATHJAX_RELPATH = https://uslugi.necada.org/js/mathjax
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# The MATHJAX_EXTENSIONS tag can be used to specify one or more MathJax
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# extension names that should be enabled during MathJax rendering. For example
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20
README.md
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README.md
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@ -112,6 +112,13 @@ Tutorials
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See also the examples directory in the source repository.
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Command line utilities
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----------------------
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* [Overview of the Python command line utilities][cliutils]
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Acknowledgments
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================
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@ -128,7 +135,7 @@ Bug reports
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===========
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If you believe that some parts of QPMS behave incorrectly, please mail
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a bug report to <marek@necada.org>. To ensure that your message is not
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a bug report to [marek@necada.org][authormail]. To ensure that your message is not
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considered spam, please start the subject line with `QPMS`.
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If you were able to fix a bug yourself, please include the patch as well,
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@ -143,7 +150,7 @@ documentation, code quality, or new features.
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You can send patches prepared using the
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[`git format-patch`](https://git-scm.com/docs/git-format-patch) tool
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to <marek@necada.org>.
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to [marek@necada.org][authormail].
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If you plan to contribute with major changes to the codebase, it is
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recommended to discuss that first (see the contact information below).
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@ -152,10 +159,10 @@ recommended to discuss that first (see the contact information below).
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Contact & discussion
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====================
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You can contact the main author e.g. via [e-mail](marek@necada.org)
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You can contact the main author e.g. via [e-mail][authormail]
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or [Telegram](https://t.me/necadam).
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You are also warmly welcome to the [QPMS user chat](https://t.me/QPMScattering)
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You are also warmly welcome to the [QPMS user chat][telegramchat]
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in Telegram!
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@ -164,9 +171,12 @@ in Telegram!
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[OpenBLAS]: https://www.openblas.net/
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[GSL]: https://www.gnu.org/software/gsl/
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[cmake]: https://cmake.org
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[tRITON-README]: README.Triton.md
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[TRITON-README]: README.Triton.md
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[tutorial-finite]: finite_systems.md
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[tutorial-infinite]: lattices.md
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[doxygen]: http://doxygen.nl/
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[QD]: https://www.aalto.fi/en/department-of-applied-physics/quantum-dynamics-qd
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[lepaper]: https://arxiv.org/abs/2006.12968
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[telegramchat]: https://t.me/QPMScattering
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[authormail]: mailto:marek@necada.org
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[cliutils]: CLIUTILS.md
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13
TODO.md
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TODO.md
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@ -40,3 +40,16 @@ Nice but less important features
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- Static, thread-safe caches of constant coefficients + API without the current "calculators".
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Optimisations
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-------------
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- Leaving out the irrelevant elements if a "rectangular" block of the translations matrix is needed.
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- Ewald sums with "non-parallel" shifts (are about 20 times slower than the purely parallel ones).
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- Reusing intermediate results (profiling needed)
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* Bessel, Legendre functions (see also branch `finite_lattice_speedup`)
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* Lattice points (sorting and scaling)
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* Γ/Δ functions (for periodic lattices)
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- More parallelisation.
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- Possibly pre-calculation of the (precise) coefficients in Bessel and Legendre functions (using gmp)
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- Asymptotic approximations of the Bessel functions for far fields.
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@ -4,8 +4,6 @@ qpms_p.py (až na změny souřadnic???)
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## Nové věci
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lattices2d.py
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scripts_common.py
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timetrack.py
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tmatrices.py
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types.py
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svwf.c
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G0T_analytical
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G0_sum_1_slow
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# scripts_common.py
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## funkce
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make_action_sharedlist
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add_argparse_k_output_options
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add_argparse_unitcell_definitions
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add_argparse_infinite_lattice_options
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add_argparse_output_options
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add_argparse_common_options
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arg_preprocess_particles
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# timetrack.py
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