论文标题

非离子化激发对离子物种扩散的影响和闪光超高剂量放疗中的轨道间相关性的影响

The effect of non-ionizing excitations on the diffusion of ion species and inter-track correlations in FLASH ultra-high dose rate radiotherapy

论文作者

Abolfath, Ramin, Baikalov, Alexander, Bartzsch, Stefan, Afshordi, Niayesh, Mohan, Radhe

论文摘要

我们提出了一种微观机制,该机制在高能粒子轨道中的外在爆发是由于与“热”非离子物种(NIS)耦合的高能粒子轨道。 NIS的热能转化为IS的动能,从轨道结构的外部到内核的热量,我们证明了“冷” NIS的共存,这是NIS的辐射轨迹结构,该结构集中在纳米尺度的范围内。耦合通过在室温下与非交互的相同配置进行比较,在室温下,我们证明,由于周围的热纳米体积,NIS的纳米体积造成的nis的纳米体积显着降低了较高的散射常数。轨道内反应速率。

We present a microscopic mechanism that accounts for the outward burst of "cold" ion species (IS) in a high-energy particle track due to coupling with ''hot" non-ion species (NIS). IS refers to radiolysis products of ionized molecules, whereas NIS refers to non-ionized excitations of molecules in a medium. The interaction is mediated by a quantized field of acoustic phonons, a channel that allows conversion of thermal energy of NIS to kinetic energy of IS, a flow of heat from the outer to the inner core of the track structure. We demonstrate the coexistence of "hot" NIS with "cold" IS in the radiation track structures right after their generation. NIS, concentrated within nano-scales volumes wrapping around IS, are the main source of intensive heat-waves and the outward burst of IS due to femto-second time scale IS-NIS coupling. By comparing the transport of IS coupled to NIS with identical configurations of non-interacting IS in thermal equilibrium at room temperature, we demonstrate that the energy gain of IS due to the surrounding hot nanoscopic volumes of NIS significantly increases their effective diffusion constants. The much higher diffusion constants predicted in the present model suggest higher inter-track chemical reaction rates at FLASH-UHDR, as well as lower intra-track reaction rates.

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