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| takin:features [2017/03/30 09:04] – pcermak | takin:features [2017/03/30 10:29] (current) – pcermak | ||
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| ====== Features of Takin ====== | ====== Features of Takin ====== | ||
| - | {{ : | + | {{ : |
| * Live display of the reciprocal and real lattice, and the unit cell. The latter, if atomic positions and the spacegroup are given. | * Live display of the reciprocal and real lattice, and the unit cell. The latter, if atomic positions and the spacegroup are given. | ||
| * Drag-and-drop manipulation of the scattering triangle and instrument configuration. | * Drag-and-drop manipulation of the scattering triangle and instrument configuration. | ||
| * Bragg peaks in the reciprocal space view show the structure factor and the corresponding Brillouin zone. | * Bragg peaks in the reciprocal space view show the structure factor and the corresponding Brillouin zone. | ||
| + | * {{: | ||
| * Live calculation and display of the triple-axis instrumental resolution based on the current scattering triangle. | * Live calculation and display of the triple-axis instrumental resolution based on the current scattering triangle. | ||
| * Supported resolution functions: Cooper-Nathans, | * Supported resolution functions: Cooper-Nathans, | ||
| + | * {{: | ||
| * Network interface to real instruments. Currently supported protocols: NICOS (MLZ) and SICS (PSI). | * Network interface to real instruments. Currently supported protocols: NICOS (MLZ) and SICS (PSI). | ||
| * Resolution convolution simulation and fitting to measured data given an external Python or Julia model for the dynamical structure factor S(Q,E). | * Resolution convolution simulation and fitting to measured data given an external Python or Julia model for the dynamical structure factor S(Q,E). | ||
| + | * Available for Windows, macOS and Linux | ||
| + | * Opensource (GNU GPL v2) | ||