We report a systematic treatment of the holographic generation of electron Bessel beams, with a view to applications in electron microscopy. We describe in detail the theory underlying hologram patterning, as well as the actual electron-optical configuration used experimentally. We show that by optimizing our nanofabrication recipe, electron Bessel beams can be generated with relative efficiencies reaching 37±3%. We also demonstrate by tuning various hologram parameters that electron Bessel beams can be produced with many visible rings, making them ideal for interferometric applications, or in more highly localized forms with fewer rings, more suitable for imaging. We describe the settings required to tune beam localization in this way, and...
We propose an improved type of holographic-plate suitable for the shaping of electron beams. The pla...
We present a simple method using an axicon and spatial light modulator to create multiple parallel B...
We present a simple method using an axicon and spatial light modulator to create multiple parallel B...
We report a systematic treatment of the holographic generation of electron Bessel beams, with a view...
Almost 30 years ago, Durnin discovered that an optical beam with a transverse intensity profile in t...
In light optics holographic beam shaping has been largely used to obtain complicated wavefronts [1] ...
Beam shaping - the ability to engineer the phase and the amplitude of massive and massless particles...
Electron microscopes offer scientists an invaluable tool in probing matter at a very small scale....
[EN] We report zero-th and high-order acoustic Bessel beams with broad depth-of-field generated usin...
Atomic resolution imaging of light elements in electron-transparent materials has long been a challe...
Electron vortex beams (EVBs) are an appealing topic, both in fundamental science and for practical a...
Manipulation with the primary beam phase in a transmission electron microscope (TEM) or a scanning t...
We propose an improved type of holographic-plate suitable for the shaping of electron beams. The pla...
We present a simple method using an axicon and spatial light modulator to create multiple parallel B...
We present a simple method using an axicon and spatial light modulator to create multiple parallel B...
We report a systematic treatment of the holographic generation of electron Bessel beams, with a view...
Almost 30 years ago, Durnin discovered that an optical beam with a transverse intensity profile in t...
In light optics holographic beam shaping has been largely used to obtain complicated wavefronts [1] ...
Beam shaping - the ability to engineer the phase and the amplitude of massive and massless particles...
Electron microscopes offer scientists an invaluable tool in probing matter at a very small scale....
[EN] We report zero-th and high-order acoustic Bessel beams with broad depth-of-field generated usin...
Atomic resolution imaging of light elements in electron-transparent materials has long been a challe...
Electron vortex beams (EVBs) are an appealing topic, both in fundamental science and for practical a...
Manipulation with the primary beam phase in a transmission electron microscope (TEM) or a scanning t...
We propose an improved type of holographic-plate suitable for the shaping of electron beams. The pla...
We present a simple method using an axicon and spatial light modulator to create multiple parallel B...
We present a simple method using an axicon and spatial light modulator to create multiple parallel B...