activity
20142022
most citedProbing Dark Matter Self-Interaction in the Sun with IceCube-PINGU

35 citations · 64 across the 6 of their papers we have counts for

collaborators

6 papers

hep-ex202221 cited

Improved search for invisible modes of nucleon decay in water with the SNO+ detector

SNO+ Collaboration, :, A. Allega +116

This paper reports results from a search for single and multi-nucleon disappearance from the O nucleus in water within the \snoplus{} detector using all of the available dat…

physics.ins-det20203 cited

Optimization of the JUNO liquid scintillator composition using a Daya Bay antineutrino detector

Daya Bay, JUNO collaborations, : +646

To maximize the light yield of the liquid scintillator (LS) for the Jiangmen Underground Neutrino Observatory (JUNO), a 20 t LS sample was produced in a pilot plant at Daya Bay. Th…

hep-ph2014

The dark matter self-interaction and its impact on the critical mass for dark matter evaporations inside the sun

Chian-Shu Chen, Fei-Fan Lee, Guey-Lin Lin +1

We study the capture, annihilation and evaporation of dark matter (DM) inside the Sun. It has been shown that the DM self-interaction can increase the DM number inside the Sun. We…

hep-ph20145 cited

Probing the coupling of heavy dark matter to nucleons by detecting neutrino signature from the Earth's core

Guey-Lin Lin, Yen-Hsun Lin, Fei-Fan Lee

We argue that the detection of neutrino signature from the Earth's core can effectively probe the coupling of heavy dark matter ( GeV) to nucleons. We first note that d…

hep-ph201435 cited

Probing Dark Matter Self-Interaction in the Sun with IceCube-PINGU

Chian-Shu Chen, Fei-Fan Lee, Guey-Lin Lin +1

We study the capture, annihilation and evaporation of dark matter (DM) inside the Sun. It has been shown that the DM self-interaction can increase the DM number inside the Sun. We…

hep-ph2014

Probing the coupling of heavy dark matter to nucleons by detecting neutrino signature from the Earth core

Guey-Lin Lin, Yen-Hsun Lin

We argue that the detection of neutrino signature from the Earth core is an ideal approach for probing the coupling of heavy dark matter ( GeV) to nucleons. We first no…