Department of Physics, Friedrich Alexander University Erlangen-Nuremberg, Staudtstrasse 1, D-91058 Erlangen, Germany, EU.
Max Planck Institute of Quantum Optics, Hans-Kopfermann-Strasse 1, D-85748 Garching/Munich, Germany, EU.
Phys Rev Lett. 2015 Jun 5;114(22):227601. doi: 10.1103/PhysRevLett.114.227601.
We report on a quantitative measurement of the spatial coherence of electrons emitted from a sharp metal needle tip. We investigate the coherence in photoemission triggered by a near-ultraviolet laser with a photon energy of 3.1 eV and compare it to dc-field emission. A carbon nanotube is brought into close proximity to the emitter tip to act as an electrostatic biprism. From the resulting electron matter wave interference fringes, we deduce an upper limit of the effective source radius both in laser-triggered and dc-field emission mode, which quantifies the spatial coherence of the emitted electron beam. We obtain (0.80±0.05) nm in laser-triggered and (0.55±0.02) nm in dc-field emission mode, revealing that the outstanding coherence properties of electron beams from needle tip field emitters are largely maintained in laser-induced emission. In addition, the relative coherence width of 0.36 of the photoemitted electron beam is the largest observed so far. The preservation of electronic coherence during emission as well as ramifications for time-resolved electron imaging techniques are discussed.
我们报告了对从尖锐金属针尖发射的电子的空间相干性的定量测量。我们研究了由光子能量为 3.1 eV 的近紫外激光触发的相干性,并将其与直流场发射进行了比较。将碳纳米管置于发射器尖端附近,用作静电双棱镜。从得到的电子物质波干涉条纹中,我们推断出激光触发和直流场发射模式下有效源半径的上限,这定量地描述了发射电子束的空间相干性。我们得到激光触发时为 (0.80±0.05)nm,直流场发射时为 (0.55±0.02)nm,这表明针尖场发射器发射的电子束的出色相干性质在激光诱导发射中得到了很大程度的保持。此外,光发射电子束的相对相干宽度为 0.36,这是迄今为止观察到的最大的相干宽度。讨论了在发射过程中电子相干性的保持以及对时间分辨电子成像技术的影响。