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<i>crystIT</i> : complexity and configurational entropy of crystal structures via information theory

Clemens Kaußler, Gregor Kieslich

2021Journal of Applied Crystallography38 citationsDOIOpen Access PDF

Abstract

The information content of a crystal structure as conceived by information theory has recently proved an intriguing approach to calculate the complexity of a crystal structure within a consistent concept. Given the relatively young nature of the field, theory development is still at the core of ongoing research efforts. This work provides an update to the current theory, enabling the complexity analysis of crystal structures with partial occupancies as frequently found in disordered systems. To encourage wider application and further theory development, the updated formulas are incorporated into crystIT (crystal structure and information theory), an open-source Python-based program that allows for calculating various complexity measures of crystal structures based on a standardized *.cif file.

Topics & Concepts

Information theoryCrystal structureComputer sciencePython (programming language)Entropy (arrow of time)Crystal (programming language)Theoretical computer scienceTheoretical physicsStatistical physicsMathematicsPhysicsCrystallographyChemistryQuantum mechanicsStatisticsProgramming languageMachine Learning in Materials ScienceComputational Drug Discovery MethodsProtein Structure and Dynamics
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