Dune-Prism--A New Method to Measure Neutrino Oscillations
暫譯: 沙丘棱鏡:測量中微子振盪的新方法

Hasnip, Ciaran Mark

  • 出版商: Springer
  • 出版日期: 2026-01-03
  • 售價: $6,950
  • 貴賓價: 9.5$6,603
  • 語言: 英文
  • 頁數: 177
  • 裝訂: Hardcover - also called cloth, retail trade, or trade
  • ISBN: 3032072506
  • ISBN-13: 9783032072504
  • 相關分類: 物理學 Physics
  • 海外代購書籍(需單獨結帳)

相關主題

商品描述

This book is a revolutionary new method to measure neutrino oscillation parameters in accelerator-based long-baseline experiments. In traditional experiments, a beam of muon neutrino is sent over a distance of several hundred kilometres and the neutrino beam composition is measured with a set of detectors very close to the production point to evaluate the original beam composition and a far detector to evaluate how this composition has changed. To perform these measurements, both the neutrino flux and their interaction cross section must be known. Dr. Hasnip developed a new method using a near detector system that is movable transverse to the beam direction. Sampling the beam at many different off-axis positions, he predicted predict the neutrino spectrum directly from the near detector data with a much-reduced dependence of the neutrino cross section. He developed the method in such a way that both the disappearance of muon neutrinos as well the appearance of electron neutrino can be predicted with reduced systematic uncertainties. He developed this so-called PRISM method in the context of the future DUNE experiment, but it will have applications for both short- and other long-baseline experiments. It is an essential tool for oscillation measurements of the next generation of precision experiments. Dr. Hasnip developed and implemented these methods in a common analysis structure and educated the collaboration about its advantages. His work convinced the collaboration and funding agencies to enlarge the underground experimental hall and make the near detectors movable, something which originally was not foreseen. This is an impressive piece of work, which will have lasting impact on neutrino oscillation experiments.

商品描述(中文翻譯)

這本書介紹了一種革命性的全新方法,用於在基於加速器的長基線實驗中測量中微子振盪參數。在傳統實驗中,一束μ子中微子被發送到幾百公里的距離,並使用一組非常接近產生點的探測器來測量中微子束的組成,以評估原始束的組成,並使用一個遠端探測器來評估這一組成如何改變。為了進行這些測量,必須知道中微子的通量及其相互作用截面。Hasnip博士開發了一種新方法,使用一個可在束方向上橫向移動的近端探測器系統。在許多不同的偏軸位置對束進行取樣,他預測了中微子光譜,這是直接從近端探測器數據中得出的,並且對中微子截面的依賴性大大降低。他開發的方法使得μ子中微子的消失以及電子中微子的出現都能以減少的系統性不確定性進行預測。他在未來的DUNE實驗背景下開發了這種所謂的PRISM方法,但它也將應用於短基線及其他長基線實驗。這是一個對下一代精密實驗的振盪測量至關重要的工具。Hasnip博士在一個共同的分析結構中開發並實施了這些方法,並向合作夥伴介紹了其優勢。他的工作說服了合作夥伴和資助機構擴大地下實驗室,並使近端探測器可移動,這在最初是未預見的。這是一項令人印象深刻的工作,將對中微子振盪實驗產生持久的影響。

作者簡介

Ciaran Hasnip is a Research Fellow at CERN whose work focuses on accelerator neutrino physics for the DUNE and T2K experiments. His research has covered exploring beyond-standard model physics searches in neutrino detectors, developing a new, less model-dependent method for measuring neutrino oscillations at DUNE and designing trigger algorithms for the DUNE data acquisition system. Ciaran obtained his undergraduate degree from the University of Manchester and completed his DPhil at the University of Oxford in 2023 before joining the CERN experimental physics neutrino (EP-NU) group as a Research Fellow.

作者簡介(中文翻譯)

Ciaran Hasnip 是 CERN 的研究員,他的工作專注於 DUNE 和 T2K 實驗中的加速器中微子物理學。他的研究涵蓋了在中微子探測器中探索超越標準模型物理的搜尋,開發了一種新的、較不依賴模型的測量 DUNE 中微子振盪的方法,以及為 DUNE 數據採集系統設計觸發演算法。Ciaran 在曼徹斯特大學獲得了本科学位,並於 2023 年在牛津大學完成了 DPhil,隨後加入 CERN 實驗物理中微子(EP-NU)小組擔任研究員。