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Journal article

Zero-order filter for diffractive focusing of de Broglie matter waves

From

University of Bergen1

University of Copenhagen2

University of Genoa3

Department of Physics, Technical University of Denmark4

Neutrons and X-rays for Materials Physics, Department of Physics, Technical University of Denmark5

The manipulation of neutral atoms and molecules via their de Broglie wave properties, also referred to asde Broglie matter wave optics, is relevant for several fields ranging from fundamental quantum mechanics testsand quantum metrology to measurements of interaction potentials and new imaging techniques.

However, there are several challenges. For example, for diffractive focusing elements, the zero-order beam provides a challenge because it decreases the signal contrast. Here we present the experimental realization of a zero-order filter, also referred to as an order-sorting aperture for de Broglie matter wave diffractive focusing elements.

The zero-order filter makes it possible to measure even at low beam intensities. We present measurements of zero-order filtered, focused, neutral helium beams generated at source stagnation pressures between 11 and 81 bars. We show that for certain conditions the atom focusing at lower source stagnation pressures (broader velocity distributions) is better than what has previously been predicted.

We present simulations with the software ray-tracing simulation package MCSTAS using a realistic helium source configuration, which gives very good agreement with our measurements.

Language: English
Publisher: American Physical Society (APS)
Year: 2017
ISSN: 24699934 , 24699926 , 10941622 and 10502947
Types: Journal article
DOI: 10.1103/PhysRevA.95.023618
ORCIDs: Bergbäck Knudsen, Erik , 0000-0003-3001-0974 and 0000-0003-4282-756X

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