We report the use of an electrostatic MEMS-based device to produce high quality electron vortex beams with more than 1000 quanta of orbital angular momentum (OAM). Diffraction and off-axis electron holography experiments are used to show that the diameter of the vortex in the diffraction plane increases linearly with OAM, thereby allowing the angular momentum content of the vortex to be calibrated. The realization of electron vortex beams with even larger values of OAM is currently limited by the breakdown voltage of the device. Potential solutions to overcome this problem are discussed.Comment: 9 pages, 4 image
In light optics, beams with orbital angular momentum (OAM) can be produced by employing a properly-t...
The component of orbital angular momentum (OAM) in the propagation direction is one of the fundament...
The component of orbital angular momentum (OAM) in the propagation direction is one of the fundament...
We report the use of an electrostatic MEMS-based device to produce high quality electron vortex beam...
We report the use of an electrostatic micro-electromechanical systems-based device to produce high q...
We report the use of an electrostatic micro-electromechanical systems-based device to produce high q...
We report the use of an electrostatic MEMS-based device to produce high quality electron vortex beam...
Electron beams with helical wavefronts carrying orbital angular momentum are expected to provide new...
Free electron beams that carry high values of orbital angular momentum (OAM) possess large magnetic ...
Electron vortex beams (EVBs) are an appealing topic, both in fundamental science and for practical a...
Free electron beams that carry high values of orbital angular momentum (OAM) possess large magnetic ...
Free electron beams that carry high values of orbital angular momentum (OAM) possess large magnetic ...
In light optics, beams with orbital angular momentum (OAM) can be produced by employing a properly-t...
In light optics, beams with orbital angular momentum (OAM) can be produced by employing a properly-t...
The recent prediction and subsequent creation of electron vortex beams in a number of laboratories o...
In light optics, beams with orbital angular momentum (OAM) can be produced by employing a properly-t...
The component of orbital angular momentum (OAM) in the propagation direction is one of the fundament...
The component of orbital angular momentum (OAM) in the propagation direction is one of the fundament...
We report the use of an electrostatic MEMS-based device to produce high quality electron vortex beam...
We report the use of an electrostatic micro-electromechanical systems-based device to produce high q...
We report the use of an electrostatic micro-electromechanical systems-based device to produce high q...
We report the use of an electrostatic MEMS-based device to produce high quality electron vortex beam...
Electron beams with helical wavefronts carrying orbital angular momentum are expected to provide new...
Free electron beams that carry high values of orbital angular momentum (OAM) possess large magnetic ...
Electron vortex beams (EVBs) are an appealing topic, both in fundamental science and for practical a...
Free electron beams that carry high values of orbital angular momentum (OAM) possess large magnetic ...
Free electron beams that carry high values of orbital angular momentum (OAM) possess large magnetic ...
In light optics, beams with orbital angular momentum (OAM) can be produced by employing a properly-t...
In light optics, beams with orbital angular momentum (OAM) can be produced by employing a properly-t...
The recent prediction and subsequent creation of electron vortex beams in a number of laboratories o...
In light optics, beams with orbital angular momentum (OAM) can be produced by employing a properly-t...
The component of orbital angular momentum (OAM) in the propagation direction is one of the fundament...
The component of orbital angular momentum (OAM) in the propagation direction is one of the fundament...