For accelerator designs with ultra short electron beams, beam dynamics study has to invoke the short-range wakefields. In this paper, we first obtain the short-range dipole mode resistive wall wakefield. Analytical approach is then developed to study the single bunch transverse beam dynamics due to this short-range resistive wall wake. The results are applied to the LCLS undulator
A new technique is proposed to compute the coupling impedances and the long-range wakefields based o...
Graphene plasmons provide a suitable alternative to noble-metal plasmons because they exhibit much t...
In this paper, we study the single bunch transverse beam dynamics in the presence of random displace...
The study of the interaction between a particle beam and wake fields is usually based on the assumpt...
Using B. Zotter’s formalism, we present here a novel, efficient and exact matrix method for the fiel...
In accelerator projects involving the use of very short bunches, such as the Linac Coherent Light So...
The kinetic power theorem for transverse field type electron beam in semiconductors is reviewed on t...
Two dimensional electromagnetic models (i.e. assuming an infinite length) for the vacuum chamber ele...
One of the key-issues to increase the luminosity in the next generation particle factories is to red...
A luminosity of a circular collider can be increased by squeezing the bunch length at the interactio...
Diffraction effects in the Coherent Transition Radiation (CTR) bunch length diagnostics are consider...
The Pedersen analysis [1, 2] of the low-level rf feedback system assumes that all bunches oscillate ...
The Landauer – Datta – Lundstrom generalized transport model is briefly summarized. If a band struct...
Early tests of short low group velocity and standing wave structures indicated the viability of oper...
The Damping Rings (DRs) complex of the Compact LInear Collider (CLIC) has to provide ultra low emitt...
A new technique is proposed to compute the coupling impedances and the long-range wakefields based o...
Graphene plasmons provide a suitable alternative to noble-metal plasmons because they exhibit much t...
In this paper, we study the single bunch transverse beam dynamics in the presence of random displace...
The study of the interaction between a particle beam and wake fields is usually based on the assumpt...
Using B. Zotter’s formalism, we present here a novel, efficient and exact matrix method for the fiel...
In accelerator projects involving the use of very short bunches, such as the Linac Coherent Light So...
The kinetic power theorem for transverse field type electron beam in semiconductors is reviewed on t...
Two dimensional electromagnetic models (i.e. assuming an infinite length) for the vacuum chamber ele...
One of the key-issues to increase the luminosity in the next generation particle factories is to red...
A luminosity of a circular collider can be increased by squeezing the bunch length at the interactio...
Diffraction effects in the Coherent Transition Radiation (CTR) bunch length diagnostics are consider...
The Pedersen analysis [1, 2] of the low-level rf feedback system assumes that all bunches oscillate ...
The Landauer – Datta – Lundstrom generalized transport model is briefly summarized. If a band struct...
Early tests of short low group velocity and standing wave structures indicated the viability of oper...
The Damping Rings (DRs) complex of the Compact LInear Collider (CLIC) has to provide ultra low emitt...
A new technique is proposed to compute the coupling impedances and the long-range wakefields based o...
Graphene plasmons provide a suitable alternative to noble-metal plasmons because they exhibit much t...
In this paper, we study the single bunch transverse beam dynamics in the presence of random displace...