Abstract
It has recently been shown that holographically nanostructured surfaces can be employed to control the wavefront of (predominantly plasmonic) optical-frequency light emission generated by the injection of medium-energy electrons into a gold surface. Here, we apply the concept to manipulation of the spatial distribution of transition radiation emission from high-refractive-index dielectric/semiconductor target materials, finding that concomitant incoherent luminescence emission at the same wavelength is unperturbed by holographic surface-relief structures, thereby deriving a means of discriminating between the two emission components.
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CITATION STYLE
Clarke, B. P., Gholipour, B., Macdonald, K. F., & Zheludev, N. I. (2018). All-dielectric free-electron-driven holographic light sources. Applied Physics Letters, 113(24). https://doi.org/10.1063/1.5048503
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