论文标题

在XMASS-I中使用太阳中微子搜索异国情调的中微子电子相互作用

Search for exotic neutrino-electron interactions using solar neutrinos in XMASS-I

论文作者

XMASS collaboration, Abe, K., Chen, Y., Hiraide, K., Ichimura, K., Imaizumi, S., Kato, N., Kobayashi, K., Kobayashi, M., Moriyama, S., Nakahata, M., Sato, K., Sekiya, H., Suzuki, T., Takeda, A., Tasaka, S., Yamashita, M., Yang, B. S., Kim, N. Y., Kim, Y. D., Kim, Y. H., Ishii, R., Itow, Y., Kanzawa, K., Martens, K., Mason, A., Suzuki, Y., Miuchi, K., Takeuchi, Y., Lee, K. B., Lee, M. K., Fukuda, Y., Ogawa, H., Kishimoto, Y., Nishijima, K., Fushimi, K., Xu, B. D., Nakamura, S.

论文摘要

我们已经搜索了中微子毫米级,中微子磁矩或使用XMASS-I液体Xenon检测器中的太阳中微子的深色光子来搜索可以通过中微子Millicharge产生的异国中微子 - 电子相互作用。我们在711天的数据中观察到没有明显的信号。我们在90 \%的置信度下获得了5.4 $ \ times $ 10 $^{ - 12} e $的中微子毫米级上微子的上限,假设所有三种中微子都具有共同的millicharge。 We also set flavor dependent limits assuming the respective neutrino flavor is the only one carrying a millicharge, $7.3 \times 10^{-12} e$ for $ν_e$, $1.1 \times 10^{-11} e$ for $ν_μ$, and $1.1 \times 10^{-11} e$ for $ν_τ$.这些限制是从直接测量中获得的最严格的限制。我们还获得了1.8 $ \ times $ 10 $^{ - 10} $ BOHR MANGETON的中微子磁矩的上限限制。此外,如果深色光子质量为1 $ \ times 10^{ - 3} $ MEV $/C^{2} $ iS,我们获得了$ U(1)_ {1)_ {1)_ {1)_ {1)_ {1)_ {1)_ {B-L} $模型的上限了mev $/c^{2} $。

We have searched for exotic neutrino-electron interactions that could be produced by a neutrino millicharge, by a neutrino magnetic moment, or by dark photons using solar neutrinos in the XMASS-I liquid xenon detector. We observed no significant signals in 711 days of data. We obtain an upper limit for neutrino millicharge of 5.4$\times$10$^{-12} e$ at 90\% confidence level assuming all three species of neutrino have common millicharge. We also set flavor dependent limits assuming the respective neutrino flavor is the only one carrying a millicharge, $7.3 \times 10^{-12} e$ for $ν_e$, $1.1 \times 10^{-11} e$ for $ν_μ$, and $1.1 \times 10^{-11} e$ for $ν_τ$. These limits are the most stringent yet obtained from direct measurements. We also obtain an upper limit for the neutrino magnetic moment of 1.8$\times$10$^{-10}$ Bohr magnetons. In addition, we obtain upper limits for the coupling constant of dark photons in the $U(1)_{B-L}$ model of 1.3$\times$10$^{-6}$ if the dark photon mass is 1$\times 10^{-3}$ MeV$/c^{2}$, and 8.8$\times$10$^{-5}$ if it is 10 MeV$/c^{2}$.

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