X-ray characterisation in high-intensity laser-solid interactions
X-ray characterisation in high-intensity laser-solid interactions
批准号:
1947696
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2017
资助国家:
英国
项目状态:
已结题
起止时间:
2017 至 --
中文摘要
当高强度激光脉冲与固体目标碰撞时,存在的电场足够强,足以电离固体原子,在目标表面产生离子和电子等离子体。这些等离子体电子在激光场中的加速通过非线性康普顿散射(NCS)过程产生X射线。虽然NCS有望在下一代激光设备中提供高效的X射线源,并可能作为激光内电子运动的诊断工具,但我们还没有在现代激光达到的较低强度的激光-固体相互作用中观察到这种过程。这是由于韧致辐射的背景,当等离子体电子在固体靶核的电场中散射时产生的。这项工作试图描述激光-固体相互作用中产生的NCS和韧致辐射X射线,并找到NCS的特征,以允许对这一过程进行实验鉴定。这将通过将模拟韧致辐射的能力添加到单元中粒子代码时代来实现。大规模的激光-固体相互作用模拟将被用来研究在不同激光/固体参数下的预期X射线分布,以确定两种辐射机制之间的角度/光谱差异。这一简单的框架将与历元模拟进行测试,以确定其适用性,并可能被用来描述激光-固体相互作用中NCS发射的预期形式。如果成功,该代码的进一步应用将有助于开发阿秒时间尺度上的X射线脉冲源
英文摘要
When a high intensity laser pulse collides with a solid target, the electric fields present are strong enough to ionise the solid atoms, creating a plasma of ions and electrons on the target surface. The acceleration of these plasma electrons in the laser fields produce X-rays via the non-linear Compton scatter (NCS) process. While it is expected that NCS may provide a highly efficient source of X-rays in next generation laser facilities, and may also act as a diagnostic for the electron motion within the laser, we have not yet observed this process in laser-solid interactions at the lower intensities reached by modern lasers. This is due to a background of bremsstrahlung radiation, produced as plasma electrons scatter in the electric fields of the solid target nuclei. This work attempts to characterise the NCS and bremsstrahlung X-rays produced in laser-solid interactions, and to find NCS signatures which would allow for experimental identification of this process. This will be accomplished by adding the capability to simulate bremsstrahlung radiation to the particle-in-cell code EPOCH. Large scale laser-solid interaction simulations will be run to study the expected X-ray distributions over a variety of laser/solid parameters to identify angular/spectral differences between the two radiation mechanisms.A single particle model has been developed to analytically describe electron sheets moving through an immobile ion channel. This simple framework will be tested against EPOCH simulations to determine it's applicability, and may be used to describe the expected form of the NCS emission in laser-solid interactions. If successful, further applications of this code could help develop a source of X-ray pulses on the attosecond timescale
期刊论文(1)
专著(0)
科研奖励(0)
会议论文
DOI:
10.1109/tps.2020.3026781
发表时间:
2021-02
期刊:
IEEE Transactions on Plasma Science
影响因子:
1.5
作者:
[S. Chintalwad;S. Krishnamurthy;B. Ramakrishna;S. Morris;C. Ridgers]
通讯作者:
S. Chintalwad;S. Krishnamurthy;B. Ramakrishna;S. Morris;C. Ridgers
海外基金