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Python Image Tool for visualizing multidimensional data. Applications include analysis of data in microscopy (STM, SSM, optics), ARPES, XRD, or other multidimensional datasets on regularly gridded coordinates.
A MATLAB GUI used for the analysis of soft x-ray angle-resolved photoemission spectroscopy (SX-ARPES) experiments that give direct access to the electronic band-structure of a material. Designed to be directly compatible with the data format of SX-ARPES experiments at the ADRESS beamline, at the Swiss Light Source (SLS) in the Paul Scherrer Institute (PSI), but can be generalised to other data formats if required.
Explore, analyze, visualize Angle Resolved Photoemission Spectroscopy (ARPES) data.
Calculator of ARPES spectra for depletion/accumulation surface layers
Code for preprocessing data from the HEXTOF instrument at FLASH, DESY in Hamburg (DE)
ARPEScape is a MATLAB-based app that contains a set of tools and functions for analysing the electronic structure of materials using photoelectron spectroscopy (PES) techniques, such as X-ray photoelectron spectroscopy (XPS) and angle-resolved photoelectron spectroscopy (ARPES).
Unsupervised clustering for identifying spatial inhomogeneity on local electronic structures
MatBase is an app that allows you to access and analyze a wide range of material properties and photoelectron spectroscopy parameters.
Python scripts for loading and analysing ARPES data.
data import and analysis modules for angle resolved time-of-flight experiments.
Integrating our manipulator software with Scienta's SES software using sockets
Create spatial maps of electronic features from large sets of SmB6 ARPES data
Analysis software for photoemission data recorded using the NanoESCA III from SCIENTA OMICRON and FOCUS GmbH. Code written for use with Igor Pro 7 or later.
Metadata logging and data curation for multidimensional photoemission spectroscopy (MPES)
Simple Python library for loading and plotting MB Scientific ARPES detector data in both KRX and TXT format.
Igor procedure file to process ARPES data
This project provides an interface simulating probed part of the BZ depending on the position of the slit and the setup parameters (rotation, tilt). It can be useful in the real beamtime which is very valuable.
This PyQt app allows loading an image of a band structure and add a parabolic fit to calculate the effective mass