Latest
Quantum dynamics in symmetry-breaking states of correlated electrons: Antiferromagnetic phase
Physica Scripta 101, 155904 (2026)journal
Computational Physicist & PhD Researcher
I build machine-learning interatomic potentials that make large-scale atomistic simulations of ferroelectric perovskites run orders of magnitude faster while keeping ab-initio accuracy. My work spans model training, scientific software development and high-performance computing on national and European supercomputers.
I am a computational physicist finishing a PhD at Charles University and the Institute of Physics of the Czech Academy of Sciences. My research trains machine-learned interatomic potentials on ab-initio data so that simulations which would take weeks of DFT can run in hours without giving up quantum-level accuracy.
Before returning to academia I spent two years in industry as a data scientist and analyst — leading small teams, building forecasting models for electricity demand and renewable generation, and turning messy operational data into something decision-makers could act on.
Day to day I work in Python and FORTRAN on Slurm clusters, with a background in numerical methods, sparse linear algebra and GPU workflows. I have published on strongly correlated electrons, ultracold atoms in optical lattices, and the energy landscapes of perovskites.
6 entries · 2014–2026
Latest
Physica Scripta 101, 155904 (2026)journal
Deep learning frameworks for exploration of energy landscapes of perovskites
Transition metals: Matching microscopic quantum dynamics with macroscopic magnetic order
The quantum vortex states in extended Bose–Hubbard model: effects of lattice geometries, inter-particle interactions and spatial inhomogeneity
Coexistence of Mott and superfluid domain of bosons confined in optical lattice
Bose–Hubbard model with attractive interactions and inhomogeneous lattice potential
Institute of Physics, Czech Academy of Sciences
Sourcelink Software, Inc. (dba Dosii)
Regent Climate Connect Knowledge Solutions Pvt. Ltd.
Skymet Weather Services Pvt. Ltd.
Department of Physics, S. P. Pune University
Charles University, Prague
Faculty of Mathematics and Physics.
University of Pune
Department of Physics.
S. P. College, University of Pune
Scans a folder of paper PDFs, extracts the DOI embedded in each one and resolves it into a formatted BibTeX entry. Built to keep a growing LaTeX bibliography in sync with a reference library without retyping citations by hand.
Desktop GUI for generating structural descriptors from atomic configurations and plotting them interactively. Used to sanity-check the feature representations that go into machine-learned interatomic potentials before training.
Numerical solver for the one-dimensional Hubbard model of correlated electrons, computing ground-state properties across the interaction strength range. A compact reference implementation of the exact-diagonalization approach used in my published work.
Working notebooks exploring IBM's Qiskit framework — circuit construction, measurement and simulator backends — as a way into quantum algorithms for many-body problems.
Monte Carlo study of percolation on lattices: locating the critical threshold, tracking cluster growth and visualising how connectivity emerges as site occupation increases.
Plotting utilities for geospatial forecast data, producing publication-quality maps of gridded fields. Written during my weather-forecasting work, where every model run needed a readable spatial view.
Routines for reading, regridding and subsetting grid-based scientific datasets, so that outputs from different forecast providers on different grids can be compared on common ground.
Small library for converting numbers between arbitrary bases in both directions, including fractional parts — the kind of primitive that turns up repeatedly in encoding and indexing problems.
Helper scripts for working on remote compute clusters: opening connections, moving job files and retrieving results, cutting the boilerplate out of a daily HPC workflow.
Presented “Deep Learning Frameworks for Exploration of Energy Landscapes of Perovskites”. Milovy, Czech Republic.
Poster: “Machine-learning-based Investigation of the Energy Landscape of PbTiO₃, BaTiO₃ and CaTiO₃”. International Congress Centre (ICC), Katowice, Poland.
Online workshop organized by ICTP Trieste, Italy.
Hotel Occidental Praha, Prague.
ICTP, Miramare, Trieste, Italy.
Taught Quantum Mechanics, Statistical Mechanics and Subatomic Physics to second-year B.Sc. students on the blended course.
Delivered Basic Mechanical Engineering lectures and practicals to first-year B.Tech and M.Tech students, through December 2020.