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基于磁性纳米振荡器散射的单色X射线源。

Monochromatic X-ray Source Based on Scattering from a Magnetic Nanoundulator.

作者信息

Fisher Sophie, Roques-Carmes Charles, Rivera Nicholas, Wong Liang Jie, Kaminer Ido, Soljačić Marin

机构信息

Department of Physics, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.

Research Laboratory of Electronics, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.

出版信息

ACS Photonics. 2020 May 20;7(5):1096-1103. doi: 10.1021/acsphotonics.0c00121. Epub 2020 Apr 1.

Abstract

We present a novel design for an ultracompact, passive light source capable of generating ultraviolet and X-ray radiation, based on the interaction of free electrons with the magnetic near-field of a ferromagnet. Our design is motivated by recent advances in the fabrication of nanostructures, which allow the confinement of large magnetic fields at the surface of ferromagnetic nanogratings. Using ab initio simulations and a complementary analytical theory, we show that highly directional, tunable, monochromatic radiation at high frequencies could be produced from relatively low-energy electrons within a tabletop design. The output frequency is tunable in the extreme ultraviolet to hard X-ray range via electron kinetic energies from 1 keV to 5 MeV and nanograting periods from 1 μm to 5 nm. The proposed radiation source can achieve the tunability and monochromaticity of current free-electron-driven sources (free-electron lasers, synchrotrons, and laser-driven undulators), yet with a significantly reduced scale, cost, and complexity. Our design could help realize the next generation of tabletop or on-chip X-ray sources.

摘要

我们提出了一种基于自由电子与铁磁体磁近场相互作用的超紧凑型无源光源的新颖设计,该光源能够产生紫外线和X射线辐射。我们的设计灵感来自于纳米结构制造方面的最新进展,这些进展使得在铁磁纳米光栅表面能够限制强磁场。通过从头算模拟和互补的解析理论,我们表明在桌面型设计中,相对低能量的电子可以产生高频的高定向、可调谐、单色辐射。通过1 keV至5 MeV的电子动能和1μm至5 nm的纳米光栅周期,输出频率可在极紫外到硬X射线范围内进行调谐。所提出的辐射源能够实现当前自由电子驱动源(自由电子激光器、同步加速器和激光驱动波荡器)的可调谐性和单色性,同时显著减小规模、降低成本并简化复杂性。我们的设计有助于实现下一代桌面型或片上X射线源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbb9/7311110/f2d35aa85dc5/ph0c00121_0001.jpg

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