研究者が開発した中性原子ビーム顕微鏡用の新しいイメージング法(Faster than one pixel at a time – new imaging method for neutral atomic beam microscopes developed by Swansea researchers)

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2024-08-16  スウォンジー大学

スウォンジー大学の研究者が開発した新しい中性原子ビーム顕微鏡のイメージング手法により、従来の1ピクセルずつのスキャンではなく、より迅速に画像を取得できるようになります。従来の方法では時間がかかる上、解像度を向上させるとさらに測定時間が増加するという課題がありましたが、新手法では磁場を用いてビームの位置情報を符号化し、解像度を向上させつつ測定時間を短縮することが可能です。この研究は将来、敏感なサンプルの高解像度イメージングに役立つと期待されています。

<関連情報>

磁気ビームスピンエンコーディングを用いた相互空間アプローチによる中性粒子ビーム顕微鏡法 Neutral beam microscopy with a reciprocal space approach using magnetic beam spin encoding

Morgan Lowe,Yosef Alkoby,Helen Chadwick & Gil Alexandrowicz
Nature Communications  Published:15 August 2024
DOI:https://doi.org/10.1038/s41467-024-51175-2

研究者が開発した中性原子ビーム顕微鏡用の新しいイメージング法(Faster than one pixel at a time – new imaging method for neutral atomic beam microscopes developed by Swansea researchers)

Abstract

The emerging technique of neutral beam microscopy offers a non-perturbative way of imaging surfaces of various materials which cannot be studied using conventional microscopes. Current neutral beam microscopes use either diffractive focusing or pin-hole scanning to achieve spatial resolution, and are characterised by a strong dependence of the imaging time on the required resolution. In this work we introduce an alternative method for achieving spatial resolution with neutral atom beams which is based on manipulating the magnetic moments of the beam particles in a gradient field, and is characterised by a much weaker dependence of the imaging time on the image resolution. The validity of the imaging approach is demonstrated experimentally by reconstructing one dimensional profiles of the beam which are in good agreement with numerical simulation calculations. Numerical simulations are used to demonstrate the dependence of the signal to noise on the scan resolution and the topography of the sample, and assess the broadening effect due to the spread of velocities of the beam particles. The route towards implementing magnetic encoding in high resolution microscopes is discussed.

1700応用理学一般
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