论文标题

BSM目标是“无目标沙丘”

BSM Targets at a "Target-less DUNE"

论文作者

Brdar, Vedran, Dutta, Bhaskar, Jang, Wooyoung, Kim, Doojin, Shoemaker, Ian M., Tabrizi, Zahra, Thompson, Adrian, Yu, Jaehoon

论文摘要

在这项工作中,我们证明了未来的基于加速器的中微子实验(例如沙丘)可以通过在质子束撞击光束旋转的模式下进行操作,从而大大提高其对各种新物理场景的敏感性。我们考虑了两个新的物理场景,即明亮的暗物质(LDM)和类似轴突的颗粒(ALP),并表明,通过在类似沙丘的实验中利用转储模式,可以在只有3个月的一半预期初始光束功率的3个月内探索未探索的新参数空间区域。具体而言,未来高强度中微子实验的无目标配置将探测热液体DM和QCD轴的参数空间(DFSZ和KSVZ)。在新物理搜索的背景下,这种构型的强度源于与目标相比,中微子通量显着降低,从而导致中微子相互作用的背景较小。我们已经通过明确计算中微子通量来详细验证了这一点,我们可以公开使用,以促进以无目标配置的进一步研究。

In this work we demonstrate that a future accelerator-based neutrino experiment such as DUNE can greatly increase its sensitivity to a variety of new physics scenarios by operating in a mode where the proton beam impinges on a beam dump. We consider two new physics scenarios, namely light dark matter (LDM) and axion-like particles (ALPs) and show that by utilizing a dump mode at a DUNE-like experiment, unexplored new regions of parameter space can be probed with an exposure of only 3 months with half of its expected initial beam power. Specifically, target-less configuration of future high intensity neutrino experiments will probe the parameter space for thermal relic DM as well as the QCD axion (DFSZ and KSVZ). The strength of such configuration in the context of new physics searches stems from the fact that the neutrino flux is significantly reduced compared to that of the target, resulting in much smaller backgrounds from neutrino interactions. We have verified this in detail by explicitly computing neutrino fluxes which we make publicly available in order to facilitate further studies with a target-less configuration.

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