Time-Evolving Block Decimation (TEBD) is a new method for efficiently simulating the dynamics of entangled quantum many-body systems. It is especially suited to one-dimensional systems governed by a Hamiltonian made of local interactions.

Open Source TEBD is a package, written in Fortran 95, which allows one to simulate the entangled quantum dynamics of a one-dimensional system governed by a Hamiltonian made of local interactions using TEBD. Expectation values and correlation functions, as well as entanglement measures and entropies, can be calculated. By propagating in imaginary time, TEBD can also be used to find the ground state of a given Hamiltonian. The code supports arbitrary internal degrees of freedom, and has been optimized to conserve total particle number. Accompanying the code is a user's guide which provides background on the theoretical and conceptual foundations of TEBD, manpages, case studies of well-known hamiltonians, and exercises.

Project Samples

Project Activity

See All Activity >

Categories

Simulation

Follow Time-Evolving Block Decimation

Time-Evolving Block Decimation Web Site

Other Useful Business Software
Veeam Data Platform v13.1 - Get Your Free Trial Icon
Veeam Data Platform v13.1 - Get Your Free Trial

Secure by design, portable by default. Recover clean, fast, anywhere. Start a free trial.

Try Veeam Data Platform today. Experience the unified platform that's secure by design, portable by default, and proven to recover clean, fast, and anywhere.
Try it Free
Rate This Project
Login To Rate This Project

User Reviews

Be the first to post a review of Time-Evolving Block Decimation!

Additional Project Details

Intended Audience

Science/Research

Registered

2013-12-29