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NEGATIVE PARTICLE PLANAR AND AXIAL CHANNELING AND CHANNELING COLLIMATION

机译:负粒子平面和轴向通道和通道集合

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While information exists on high energy negative particle channeling there has been little study of the challenges of negative particle bending and channeling collimation. Partly this is because negative dechanneling lengths are relatively much shorter. Electrons are not particularly useful for investigating negative particle channeling effects because their material interactions are dominated by channeling radiation. Another important factor is that the current central challenge in channeling collimation is the proton-proton Large Hadron Collider (LHC) where both beams are positive. On the other hand in the future the collimation question might reemerge for electron-positron or muon colliders. Dechanneling lengths increase at higher energies so that part of the negative particle experimental challenge diminishes. In the article different approaches to determining negative dechanneling lengths are reviewed. The more complicated case for axial channeling is also discussed. Muon channeling as a tool to investigate dechanneling is also discussed. While it is now possible to study muon channeling it will probably not illuminate the study of negative dechanneling.
机译:尽管存在有关高能负粒子通道的信息,但对负粒子弯曲和通道准直的挑战的研究很少。部分原因是因为负的去沟道长度相对较短。电子对于研究负粒子的通道效应并不是特别有用,因为它们的材料相互作用主要由通道辐射控制。另一个重要因素是,在通道准直中当前面临的主要挑战是质子-质子大强子对撞机(LHC),其中两束光都为正。另一方面,对于电子-正电子或μ子对撞机,准直问题可能会再次出现。在较高的能量下,脱沟道长度增加,因此负粒子实验挑战的一部分减少了。在本文中,介绍了确定负反沟道长度的不同方法。还讨论了轴向通道更复杂的情况。还讨论了Muon通道化作为研究去通道化的工具。虽然现在有可能研究介子沟道,但它可能不会阐明负反沟道的研究。

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