10,767 research outputs found
Low-energy electronic recoil in xenon detectors by solar neutrinos
Low-energy electronic recoil caused by solar neutrinos in multi-ton xenon
detectors is an important subject not only because it is a source of the
irreducible background for direct searches of weakly-interacting massive
particles (WIMPs), but also because it provides a viable way to measure the
solar and neutrinos at the precision level of current
standard solar model predictions. In this work we perform
many-body calculations for the structure, photoionization, and
neutrino-ionization of xenon. It is found that the atomic binding effect yields
a sizable suppression to the neutrino-electron scattering cross section at low
recoil energies. Compared with the previous calculation based on the free
electron picture, our calculated event rate of electronic recoil in the same
detector configuration is reduced by about . We present in this paper the
electronic recoil rate spectrum in the energy window of 100 eV - 30 keV with
the standard per ton per year normalization for xenon detectors, and discuss
its implication for low energy solar neutrino detection (as the signal) and
WIMP search (as a source of background).Comment: 12 pages, 3 figure
Temperature-dependent permittivity of annealed and unannealed gold films
Due to local field enhancement and subwavelength confinements,
nano-plasmonics provide numerous novel applications. Simultaneously, as an
efficient nanoscale heat generator from inherent absorption, thermo-plasmonics
is emerging as an important branch. However, although significant temperature
increase is involved in applications, detailed characterization of metal
permittivity at different temperatures and corresponding thermo-derivative are
lacking. In this work, we extract the permittivity of gold from 300K to the
annealing temperature of 570K. By comparing annealed and unannealed films, more
than one-order difference in thermo-derivative of permittivity is revealed,
resulting in unexpectedly large variation of plasmonic properties. Our result
is valuable not only for characterizing extensively used unannealed
nanoparticles, but also for designing future thermo-nano-plasmonic systems.Comment: 6 pages, 4 figures, revised and published on Optics Expres
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