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DiRAC-3 Operations - 2022-23 extension - Cambridge

Lead Research Organisation: University of Cambridge
Department Name: Institute of Astronomy

Abstract

This grant is a costed 12-month extension of the grant "DiRAC-3 Operations 2019-2022 - Cambridge [2020-06 resubmission]", (STFC reference: ST/V002635/1).

Publications

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Hagen S (2024) What drives the variability in AGN? Explaining the UV-Xray disconnect through propagating fluctuations in Monthly Notices of the Royal Astronomical Society

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Haidar H (2022) The black hole population in low-mass galaxies in large-scale cosmological simulations in Monthly Notices of the Royal Astronomical Society

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Harnois-Déraps J (2023) mglens : Modified gravity weak lensing simulations for emulation-based cosmological inference in Monthly Notices of the Royal Astronomical Society

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He Q (2022) Galaxy-galaxy strong lens perturbations: line-of-sight haloes versus lens subhaloes in Monthly Notices of the Royal Astronomical Society

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He Q (2022) A forward-modelling method to infer the dark matter particle mass from strong gravitational lenses in Monthly Notices of the Royal Astronomical Society

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Heinesen A (2022) A prediction for anisotropies in the nearby Hubble flow in Journal of Cosmology and Astroparticle Physics

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Hellinger P (2022) Ion-scale Transition of Plasma Turbulence: Pressure-Strain Effect in The Astrophysical Journal

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Hernández-Aguayo C (2023) The MillenniumTNG Project: high-precision predictions for matter clustering and halo statistics in Monthly Notices of the Royal Astronomical Society

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Hernández-Aguayo C (2022) Fast full N-body simulations of generic modified gravity: derivative coupling models in Journal of Cosmology and Astroparticle Physics

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Herrington N (2024) Magnetic fields in star-forming environments: how does field strength affect gas on spiral arm and cloud scales? in Monthly Notices of the Royal Astronomical Society

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Herrington N (2023) The role of previous generations of stars in triggering star formation and driving gas dynamics in Monthly Notices of the Royal Astronomical Society

 
Description Many new discoveries about the formation and evolution of galaxies, star formation, planet formation and particle physics theory have been made possible by the award.
Exploitation Route Many international collaborative projects are supported by the HPC resources provided by DiRAC.
Sectors Aerospace

Defence and Marine

Creative Economy

Digital/Communication/Information Technologies (including Software)

Education

Healthcare