In this paper, we introduce the quantum mechanical approach as a more physically-realistic model to accurately quantify the electron-photon interaction in Photon-induced near-field electron microscopy (PINEM). Further, we compare the maximum coupling speed between the electrons and the photons in the quantum and classical regime. For a nanosphere of radius 2.13 nm, full quantum calculations show that the maximum coupling between photon and electron occurs at a slower speed than classical calculations report. In addition, a significant reduction in PINEM field intensity is observed for the full quantum model. Furthermore, we discuss the size limitation for particles imaged using the PIMEN technique and the role of the background material in ...
The interplay between free electrons, light, and matter offers unique prospects for space, time, and...
In this Letter, we discuss the use of photon-induced near field electron microscopy (PINEM) to reach...
In this Letter, we discuss the use of photon-induced near field electron microscopy (PINEM) to reach...
In this paper, we introduce the quantum mechanical approach as a more physically-realistic model to ...
In this paper, we introduce the quantum mechanical approach as a more physically-realistic model to ...
In this paper, we introduce the quantum mechanical approach as a more physically-realistic model to ...
In this paper, we introduce the quantum mechanical approach as a more physically-realistic model to ...
In this paper, we introduce the quantum mechanical approach as a more physically-realistic model to ...
Ultrafast electron microscopy in the space and time domains utilizes a pulsed electron probe to dire...
Electron imaging in space and time is achieved in microscopy with timed (near relativistic) electron...
Electron imaging in space and time is achieved in microscopy with timed (near relativistic) electron...
In materials science and biology, optical near-field microscopies enable spatial resolutions beyond ...
In materials science and biology, optical near-field microscopies enable spatial resolutions beyond ...
This book focuses on the use of novel electron microscopy techniques to further our understanding of...
Photon-induced near-field electron microscopy (PINEM) enables the visualization of the plasmon field...
The interplay between free electrons, light, and matter offers unique prospects for space, time, and...
In this Letter, we discuss the use of photon-induced near field electron microscopy (PINEM) to reach...
In this Letter, we discuss the use of photon-induced near field electron microscopy (PINEM) to reach...
In this paper, we introduce the quantum mechanical approach as a more physically-realistic model to ...
In this paper, we introduce the quantum mechanical approach as a more physically-realistic model to ...
In this paper, we introduce the quantum mechanical approach as a more physically-realistic model to ...
In this paper, we introduce the quantum mechanical approach as a more physically-realistic model to ...
In this paper, we introduce the quantum mechanical approach as a more physically-realistic model to ...
Ultrafast electron microscopy in the space and time domains utilizes a pulsed electron probe to dire...
Electron imaging in space and time is achieved in microscopy with timed (near relativistic) electron...
Electron imaging in space and time is achieved in microscopy with timed (near relativistic) electron...
In materials science and biology, optical near-field microscopies enable spatial resolutions beyond ...
In materials science and biology, optical near-field microscopies enable spatial resolutions beyond ...
This book focuses on the use of novel electron microscopy techniques to further our understanding of...
Photon-induced near-field electron microscopy (PINEM) enables the visualization of the plasmon field...
The interplay between free electrons, light, and matter offers unique prospects for space, time, and...
In this Letter, we discuss the use of photon-induced near field electron microscopy (PINEM) to reach...
In this Letter, we discuss the use of photon-induced near field electron microscopy (PINEM) to reach...