We propose an improved type of holographic-plate suitable for the shaping of electron beams. The plate is fabricated by a focused ion beam on a silicon nitride membrane and introduces a controllable phase shift to the electron wavefunction. We adopted the optimal blazed-profile design for the phase hologram, which results in the generation of highly efficient (25%) electron vortex beams. This approach paves the route towards applications in nano-scale imaging and materials science
In light optics holographic beam shaping has been largely used to obtain complicated wavefronts [1] ...
Electron beams with helical wavefronts carrying orbital angular momentum are expected to provide new...
We apply holographic principles to tailor light emission resulting from the injection of free electr...
We propose an improved type of holographic-plate suitable for the shaping of electron beams. The pla...
In light optics the use of holographic beam shaping has been largely used to obtain complicated wave...
Electron vortex beams (EVBs) are an appealing topic, both in fundamental science and for practical a...
© 2020 Elsevier B.V. Electron beams can acquire designed phase modulations by passing through nanost...
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....
Free electron beams that carry high values of orbital angular momentum (OAM) possess large magnetic ...
Manipulation with the primary beam phase in a transmission electron microscope (TEM) or a scanning t...
We report a systematic treatment of the holographic generation of electron Bessel beams, with a view...
We report on the design and demonstration of holographic nanostructures via which the wavefront of l...
We report a systematic treatment of the holographic generation of electron Bessel beams, with a view...
We apply holographic principles to tailor light emission resulting from the injection of free electr...
In light optics holographic beam shaping has been largely used to obtain complicated wavefronts [1] ...
Electron beams with helical wavefronts carrying orbital angular momentum are expected to provide new...
We apply holographic principles to tailor light emission resulting from the injection of free electr...
We propose an improved type of holographic-plate suitable for the shaping of electron beams. The pla...
In light optics the use of holographic beam shaping has been largely used to obtain complicated wave...
Electron vortex beams (EVBs) are an appealing topic, both in fundamental science and for practical a...
© 2020 Elsevier B.V. Electron beams can acquire designed phase modulations by passing through nanost...
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....
Free electron beams that carry high values of orbital angular momentum (OAM) possess large magnetic ...
Manipulation with the primary beam phase in a transmission electron microscope (TEM) or a scanning t...
We report a systematic treatment of the holographic generation of electron Bessel beams, with a view...
We report on the design and demonstration of holographic nanostructures via which the wavefront of l...
We report a systematic treatment of the holographic generation of electron Bessel beams, with a view...
We apply holographic principles to tailor light emission resulting from the injection of free electr...
In light optics holographic beam shaping has been largely used to obtain complicated wavefronts [1] ...
Electron beams with helical wavefronts carrying orbital angular momentum are expected to provide new...
We apply holographic principles to tailor light emission resulting from the injection of free electr...