A periodic arrangement of 2D conducting planes is known to host a (bulk) plasmon dispersion that interpolates between the typical, gapped behavior of 3D metals and a gapless, acoustic regime as a function of the out-of-plane wavevector. The semi-infinite system -- the configuration relevant to Electron Energy Loss Spectroscopy (EELS) in a reflection geometry, as in High Resolution EELS (HREELS) -- is known to host a surface plasmon that ceases to propagate below a cutoff wavevector. As the f-sum rule requires a finite response whether or not there exist sharp excitations, we demonstrate that what remains in the surface loss function -- the material response probed by HREELS -- is the contribution from the (bulk) plasmon of the infinite syst...
*S Supporting Information ABSTRACT: Plasmon modes of the exact same individual gold nanoprisms are i...
Electron energy-loss spectroscopy (EELS) has become an experimental method of choice for the investi...
From molecular sensors to perfect lenses, plasmonic devices promise a wealth of breakthrough applica...
Plasmon is considered to be the incompressible self-oscillation of conducting electrons in small nan...
Theoretical approaches to coherent excitation of two plasmons in a metal do not well agree with one ...
In the Comment [1], Schaich calculated the mode dispersion of surface plasmons supported by a planar...
In the Comment [1], Schaich calculated the mode dispersion of surface plasmons supported by a planar...
We study strongly confined plasmons in ultrathin gold and silver films by simulating electron energy...
In a slab geometry with large surface-to-bulk ratio, topological surface states such as Fermi arcs f...
A systematic analysis of phonon-plasmon coupled excitations in three-dimensional (3D) polar systems ...
The interaction of light with matter has triggered the interest of scientists for a long time. The a...
The article deals with two issues concerning reflection electron energy loss spectroscopy (REELS), n...
The interaction of light with matter has triggered the interest of scientists for a long time. The a...
In view of high-resolution electron-energy-loss spectroscopy, we predict the energy-loss spectrum of...
© 2015 American Chemical Society. Plasmon modes of the exact same individual gold nanoprisms are inv...
*S Supporting Information ABSTRACT: Plasmon modes of the exact same individual gold nanoprisms are i...
Electron energy-loss spectroscopy (EELS) has become an experimental method of choice for the investi...
From molecular sensors to perfect lenses, plasmonic devices promise a wealth of breakthrough applica...
Plasmon is considered to be the incompressible self-oscillation of conducting electrons in small nan...
Theoretical approaches to coherent excitation of two plasmons in a metal do not well agree with one ...
In the Comment [1], Schaich calculated the mode dispersion of surface plasmons supported by a planar...
In the Comment [1], Schaich calculated the mode dispersion of surface plasmons supported by a planar...
We study strongly confined plasmons in ultrathin gold and silver films by simulating electron energy...
In a slab geometry with large surface-to-bulk ratio, topological surface states such as Fermi arcs f...
A systematic analysis of phonon-plasmon coupled excitations in three-dimensional (3D) polar systems ...
The interaction of light with matter has triggered the interest of scientists for a long time. The a...
The article deals with two issues concerning reflection electron energy loss spectroscopy (REELS), n...
The interaction of light with matter has triggered the interest of scientists for a long time. The a...
In view of high-resolution electron-energy-loss spectroscopy, we predict the energy-loss spectrum of...
© 2015 American Chemical Society. Plasmon modes of the exact same individual gold nanoprisms are inv...
*S Supporting Information ABSTRACT: Plasmon modes of the exact same individual gold nanoprisms are i...
Electron energy-loss spectroscopy (EELS) has become an experimental method of choice for the investi...
From molecular sensors to perfect lenses, plasmonic devices promise a wealth of breakthrough applica...