CWRU PAT Coffee Agenda

Tuesdays 10:30 - 11:30 | Fridays 11:30 - 12:30

+4 The EFT-Hedron.

kjh92 +4

+2 Symmetry and Unification from Soft Theorems and Unitarity.

kjh92 +2

+2 D-instantons, String Field Theory and Two Dimensional String Theory.

kjh92 +2

+1 Anomalous separations of the CMB temperature angular power spectrum.

gds6 +1

+1 Non-tensorial Gravitational Wave Background in NANOGrav 12.5-Year Data Set.

gds6 +1

Showing votes from 2021-01-15 12:30 to 2021-01-19 11:30 | Next meeting is Tuesday Dec 23rd, 10:30 am.

users

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astro-ph.CO

  • Towards Cosmological Simulations of Dark Matter on Quantum Computers.- [PDF] - [Article]

    Philip Mocz, Aaron Szasz
     

    State-of-the-art cosmological simulations on classical computers are limited by time, energy, and memory usage. Quantum computers can perform some calculations exponentially faster than classical computers, using exponentially less energy and memory, and may enable extremely large simulations that accurately capture the whole dynamic range of structure in the Universe within statistically representative cosmic volumes. However, not all computational tasks exhibit a `quantum advantage'. Quantum circuits act linearly on quantum states, so nonlinearities (e.g. self-gravity in cosmological simulations) pose a significant challenge. Here we outline one potential approach to overcome this challenge and solve the (nonlinear) Schrodinger-Poisson equations for the evolution of self-gravitating dark matter, based on a hybrid quantum-classical variational algorithm framework (Lubasch 2020). We demonstrate the method with a proof-of-concept mock quantum simulation, envisioning a future where quantum computers will one day lead simulations of dark matter.

astro-ph.HE

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astro-ph.GA

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astro-ph.IM

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gr-qc

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hep-ph

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hep-th

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hep-ex

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quant-ph

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other

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