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Beam Delivery and Beamstrahlung Considerations for Ultra-High Energy Linear Colliders

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arxiv 2305.00573 v2 pith:Z2CQNZAX submitted 2023-04-30 physics.acc-ph hep-ex

classification physics.acc-phhep-ex
keywords mustbeambeamstrahlungcollidersacceleratorcommunitycompactdelivery
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

As part of the Snowmass'21 community planning excercise, the Advanced Accelerator Concepts (AAC) community proposed future linear colliders with center-of-mass energies up to 15 TeV and luminosities up to 50$\times10^{34}$ cm$^{-2}$s$^{-1}$ in a compact footprint. In addition to being compact, these machines must also be energy efficient. We identify two challenges that must be addressed in the design of these machines. First, the Beam Delivery System (BDS) must not add significant length to the accelerator complex. Second, beam parameters must be chosen to mitigate beamstrahlung effects and maximize the luminosity-per-power of the machine. In this paper, we review advances in plasma lens technology that will help to reduce the length of the BDS system and we detail new Particle-in-Cell simulation studies that will provide insight into beamstrahlung mitigation techniques. We apply our analysis to both $e^+e^-$ and $\gamma\gamma$ colliders.

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