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ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=info:doi10.26180/13285460.v1&rft.title=spinsim&rft.identifier=https://doi.org/10.26180/13285460.v1&rft.publisher=Monash University&rft.description=spinsim is a python package that simulates spin half and spin one quantum mechanical systems following a time dependent Shroedinger equation. It makes use of the numba.cuda llvm compiler, and other optimisations, to allow for fast and accurate evaluation on Nvidia Cuda compatible systems using GPU parallelisation.&rft.creator=Alexander Tritt&rft.creator=James Saunderson&rft.creator=Lincoln Turner&rft.date=2022&rft_rights=Apache 2.0&rft_subject=Time dependent Schroedinger equation&rft_subject=Quantum&rft_subject=Physics&rft_subject=Spin one&rft_subject=Spin half&rft_subject=Integrator&rft_subject=Exponentiator&rft_subject=GPU&rft_subject=Parallel computing&rft_subject=Solver&rft_subject=Python&rft_subject=Numba&rft_subject=Sensing&rft_subject=Applied Physics&rft_subject=Atomic Physics&rft_subject=Computational Physics&rft_subject=Quantum Mechanics&rft_subject=Degenerate Quantum Gases and Atom Optics&rft_subject=Quantum Information, Computation and Communication&rft.type=Computer Program&rft.language=English Access the software

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spinsim is a python package that simulates spin half and spin one quantum mechanical systems following a time dependent Shroedinger equation. It makes use of the numba.cuda llvm compiler, and other optimisations, to allow for fast and accurate evaluation on Nvidia Cuda compatible systems using GPU parallelisation.

Issued: 2022-04-11

Created: 2022-04-11

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