Physics World 09月13日
光电离与ICD:理解电离辐射对固体物质的影响
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本文探讨了紫外或X射线辐射与固体物质相互作用过程中的关键物理现象。研究首先介绍了光电离,即原子或分子吸收光子后失去电子。随后,文章重点阐述了次级电离过程,特别是原子间库仑衰减(ICD),这一过程在许多情况下会主导整个系统的动力学。ICD通过激发原子或分子将能量转移给相邻的原子或分子,导致后者被电离,并产生低能电子,对生物物质造成辐射损伤。研究团队利用ASTRID2同步辐射光源和电子速度图成像光谱仪,深入研究了极端紫外光与氦原子团簇的相互作用,揭示了ICD过程的效率可能比先前预期的更高,这对理解辐射疗法等领域至关重要。

⚡️ 光电离是电离辐射与物质相互作用的初始阶段:当原子或分子吸收一个光子时,会发生光电离,从而失去一个或多个电子,这是理解后续过程的基础。

⚛️ 次级电离过程,尤其是原子间库仑衰减(ICD),是影响系统动力学的关键:ICD通过激发原子或分子将能量传递给相邻的原子或分子,使其被电离,并常常产生低能电子,对生物组织造成损伤。

🔬 研究利用先进技术揭示ICD的高效性:通过在ASTRID2同步辐射光源上进行实验,并结合电子速度图成像光谱仪,研究人员能够精确测量电子的能量和分布,从而证明ICD过程的效率可能超出以往的认识。

💡 理解ICD对医学和材料科学至关重要:对ICD过程的深入了解有助于更好地控制电离辐射在辐射治疗等领域的效应,并为材料测试等应用提供理论支持。

Studying the chain of processes that take place when UV or x-ray radiation interacts with solid matter is crucial in various fields from medical physics to materials testing.

The first of these processes is typically photoionisation, where an atom or molecule absorbs a photon and loses one or more electrons as a result.

What comes next can vary depending on the strength of the radiation and the nature of the material, but some of the most important effects are secondary ionisation processes. These often go on to dominate the dynamics of the whole system.

One of these is interatomic Coulombic decay (ICD), in which energy is transferred from one excited atom or molecule to a neighbouring one, which in turn is ionised.

ICD has captured considerable interest since its discovery, not least because it often produces low energy electrons which cause radiation damage in biological matter.

Understanding this phenomenon better was the team’s goal in this latest work. Using the ASTRID2 synchrotron in Aarhus, Denmark, they studied what happened when extreme UV photons interacted with small clusters of helium atoms.

To capture what was going on they used an electron velocity-map imaging spectrometer. This is a powerful diagnostic that measures any emitted electrons’ energy in addition to their angular distribution.

Using this technique, they were able to show that the ICD process is even more efficient than previously thought. The researchers expect it to play a crucial role in other condensed phase systems exposed to ionising radiation as well.

Knowledge gained from studies such as this one is crucial for fields like radiation therapy, where the effects of ionising radiation on human cells must be tightly controlled.

The post The destructive effects of ionising radiation appeared first on Physics World.

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相关标签

电离辐射 光电离 ICD 原子间库仑衰减 辐射损伤 同步辐射 电子成像光谱仪 Ionizing Radiation Photoionization ICD Interatomic Coulombic Decay Radiation Damage Synchrotron Radiation Electron Velocity-Map Imaging Spectrometer
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