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用于时间分辨能带结构成像的动量显微镜的研制。

Development of a momentum microscope for time resolved band structure imaging.

作者信息

Krömker B, Escher M, Funnemann D, Hartung D, Engelhard H, Kirschner J

机构信息

Omicron Nanotechnology GmbH, 65232 Taunusstein, GermanyFocus GmbH, 65510 Hünstetten, Germany.

出版信息

Rev Sci Instrum. 2008 May;79(5):053702. doi: 10.1063/1.2918133.

Abstract

We demonstrate the use of a novel design of a photoelectron microscope in combination to an imaging energy filter for momentum resolved photoelectron detection. Together with a time resolved imaging detector, it is possible to combine spatial, momentum, energy, and time resolution of photoelectrons within the same instrument. The time resolution of this type of energy analyzer can be reduced to below 100 ps. The complete ARUPS pattern of a Cu(111) sample excited with He I, is imaged in parallel and energy resolved up to the photoelectron emission horizon. Excited with a mercury light source (h nu=4.9 eV), the Shockley surface state at the energy threshold is clearly imaged in k-space. Electron-electron interactions are observed in momentum space as a correlation hole in two-electron photoemission. With the high transmission and the time resolution of this instrument, possible new measurements are discussed: Time and polarization resolved ARUPS measurements, probing change of bandstructure due to chemical reaction, growth of films, or phase transitions, e.g., melting or martensitic transformations.

摘要

我们展示了一种新型光电子显微镜与成像能量过滤器相结合用于动量分辨光电子检测的设计。与时间分辨成像探测器一起,可以在同一仪器内结合光电子的空间、动量、能量和时间分辨率。这种类型的能量分析仪的时间分辨率可降低到100皮秒以下。用氦Ⅰ激发的Cu(111)样品的完整角分辨光电子能谱(ARUPS)图案被并行成像,并在光电子发射范围内进行能量分辨。用汞光源(h ν = 4.9 eV)激发时,能量阈值处的肖克利表面态在k空间中清晰成像。在动量空间中观察到电子 - 电子相互作用表现为双电子光发射中的关联空穴。凭借该仪器的高透射率和时间分辨率,讨论了可能的新测量:时间和偏振分辨的ARUPS测量、探测由于化学反应、薄膜生长或相变(例如熔化或马氏体转变)引起的能带结构变化。

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