PaperPanorama

Nuclear Theory·nucl-th

Tuesday·July 2, 2019

7 papers5 primary·2 cross-listed

  1. 06

    Metastable Nuclear Isomers as Dark Matter Accelerators

    Maxim Pospelov🇨🇦 · Surjeet Rajendran🇺🇸 · Harikrishnan Ramani🇺🇸

    Inelastic dark matter and strongly interacting dark matter are poorly constrained by direct detection experiments since they both require the scattering event to deliver energy from the nucleus into the dark matter in order to have observable effects. We propose to test these scenarios by searching for the collisional de-excitation of meta-stable nuclear isomers by the dark matter particles. The longevity of these isomers is related to a strong suppression of - and -transitions, typically inhibited by a large difference in the angular momentum for the nuclear transition. The collisional de-excitation by dark matter is possible since heavy dark matter particles can have a momentum exchange with the nucleus comparable to the inverse nuclear size, hence lifting tremendous angular momentum suppression of the nuclear transition. This de-excitation can be observed either by searching for the direct effects of the decaying isomer, or through the re-scattering or decay of excited dark matter states in a nearby conventional dark matter detector setup. Existing nuclear isomer sources such as naturally occurring Ta, Ba produced in decaying Cesium in nuclear waste, Lu from medical waste, and Hf from the Department of Energy storage can be combined with current dark matter detector technology to search for this class of dark matter.

    hep-phastro-ph.COhep-exnucl-ex+1PRD(2020)·48 citations
  2. 07

    PCN calculations for Z=111 to Z=118

    Walter Loveland · Liangyu Yao

    In previous publications, we presented evidence for the importance of spin in determining capture and evaporation residue cross sections in the synthesis of heavy nuclei. We extend the previous calculations which dealt with nuclei where ZCN is less than 110 to the region of ZCN = 111-118. We deduce a new systematics of the fusion probability for these reactions

    nucl-exnucl-thSpringer Proc.Phys.(2021)·1 citation

Affiliations

first authorsco-authorsvia INSPIRE