activity
20002002
collaborators

9 papers

physics.acc-ph2002

Wakefield Band Partitioning In Linac Structures

R. M. Jones, V. Dolgashev, K. L. F. Bane +1

In the NLC project multiple bunches of electrons and positrons will be accelerated initially to a centre of mass of 500 GeV and later to 1 TeV or more. In the process of accelerati…

physics.acc-ph2001

Impedance Analysis of Bunch Length Measurements at the ATF Damping Ring

K. L. F. Bane, T. Naito, T. Okugi +2

We present energy spread and bunch length measurements at the Accelerator Test Facility (ATF) at KEK, as functions of current, for different ring rf voltages, and with the beam bot…

physics.acc-ph2001

On Resonant Multi-Bunch Wakefield Effects in Linear Accelerators with Dipole Mode Detuning

Karl L. F. Bane, Zenghai Li

In this report we explore resonant multi-bunch, transverse wakefield effects in a linear accelerator in which the dipole modes of the accelerator structures have been detuned.

physics.acc-ph2001

Obtaining the Wakefield Due to Cell-to-Cell Misalignments in a Linear Accelerator Structure

Karl L. F. Bane, Zenghai Li

A linear accelerator structure, such as will be used in the linacs of the JLC/NLC collider, is composed of on the order of 100 cells. The cells are constructed as individual cups t…

physics.acc-ph2001

Analytic Formula for Weak Multi-Bunch Beam Break-Up in a Linac

Karl L. F. Bane, Zenghai Li

In designing linear accelerator structures for multi-bunch applications we are often interested in estimating the effect of relatively weak multi-bunch beam break-up (BBU), due to…

physics.acc-ph2000

Dipole Mode Detuning in the Injector Linacs of the NLC

Karl L. F. Bane, Zenghai Li

The injector linacs of the JLC/NLC project include the prelinac, the e+ drive linac, the e+ booster. The first three will be S-band machines, the last one, an…