Lecture Notes: many-body quantum dynamics with MCTDH-X
Paolo Molignini, Sunayana Dutta, Elke Fasshauer

TL;DR
These lecture notes comprehensively introduce the MCTDH-X software for simulating many-body quantum dynamics of indistinguishable particles, combining theoretical foundations, practical workflows, and benchmark validations.
Contribution
The notes provide a detailed guide on applying MCTDH-X to bosonic and fermionic systems, including advanced features and practical instructions for accurate quantum simulations.
Findings
Benchmark results show high accuracy of MCTDH-X in ground-state calculations.
The software effectively models quantum dynamics and correlation functions.
Practical workflows facilitate user adoption and application in research.
Abstract
The lecture notes on "Many-body Quantum Dynamics with MCTDH-X," adapted from the 2023 Heidelberg MCTDH Summer School, provide an in-depth exploration of the Multiconfigurational Time-Dependent Hartree approach for indistinguishable particles. They serve as a comprehensive guide for understanding and utilizing the MCTDH-X software for both bosonic and fermionic systems. The tutorial begins with an introduction to the MCTDH-X software, highlighting its capability to handle various quantum systems, including those with internal degrees of freedom and long-range interactions. The theoretical foundation is then laid out on how to solve the time-dependent and time-independent Schr\"odinger equations for many-body systems. The workflow section provides practical instructions on setting up and executing simulations using MCTDH-X. Detailed benchmarks against exact solutions are presented,…
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Taxonomy
TopicsCold Atom Physics and Bose-Einstein Condensates · Atomic and Subatomic Physics Research · Quantum, superfluid, helium dynamics
