DOE OSTI · 3001831
Laser wakefield acceleration driven by a discrete flying focus
Abstract
Laser wakefield acceleration (LWFA) may enable the next generation of TeV-scale lepton colliders. Reaching such energies will likely require multiple LWFA stages to overcome limitations on the energy gain achievable in a single stage. The use of stages, however, introduces challenges such as alignment, adiabatic matching between stages, and a lower average accelerating gradient. Here, we propose a discrete flying focus that can deliver higher energy gain in a single stage, thereby reducing the number of stages required for a target energy. A sequence of laser pulses with staggered focal points and delays drives a plasma wave in which an electron beam experiences a near-constant accelerating gradient over distances beyond those attainable with a conventional pulse. Simulations demonstrate that a discrete flying focus with a total energy of 150 J can transfer 40 GeV per electron to a 50-pC beam in a single 30-cm stage, corresponding to 50 dephasing lengths.
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Pierce, Jacob R. [Univ. of California, Los Angeles, CA (United States)] (ORCID:000000031450873X), Miller, Kyle G. [Univ. of Rochester, NY (United States). Lab. for Laser Energetics] (ORCID:0000000348269001), Li, Fei [Tsinghua Univ., Beijing (China)] (ORCID:000000018627910X), Palastro, John P. [Univ. of Rochester, NY (United States). Lab. for Laser Energetics] (ORCID:0000000267211924), Mori, Warren B. [Univ. of California, Los Angeles, CA (United States)]. 2025-10-24. Laser wakefield acceleration driven by a discrete flying focus. https://doi.org/10.1103/qts4-8kgf
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