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Wakefield excitation via metasurface-loaded waveguide

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Wakefield excitation via metasurface-loaded waveguide. / Sharples, Emmy; Letizia, Rosa.
Proceedings of IPAC2014, Dresden, Germany. Geneva: JACoW, 2014. p. 1437-1439.

Research output: Contribution in Book/Report/Proceedings - With ISBN/ISSNConference contribution/Paperpeer-review

Harvard

Sharples, E & Letizia, R 2014, Wakefield excitation via metasurface-loaded waveguide. in Proceedings of IPAC2014, Dresden, Germany. JACoW, Geneva, pp. 1437-1439, 5th International Particle Accelerator Conference 2014, Dresden, Germany, 15/06/14. <http://accelconf.web.cern.ch/AccelConf/IPAC2014/papers/tupme038.pdf>

APA

Vancouver

Sharples E, Letizia R. Wakefield excitation via metasurface-loaded waveguide. In Proceedings of IPAC2014, Dresden, Germany. Geneva: JACoW. 2014. p. 1437-1439

Author

Sharples, Emmy ; Letizia, Rosa. / Wakefield excitation via metasurface-loaded waveguide. Proceedings of IPAC2014, Dresden, Germany. Geneva : JACoW, 2014. pp. 1437-1439

Bibtex

@inproceedings{a2224034eba04d29a11fa7023672927d,
title = "Wakefield excitation via metasurface-loaded waveguide",
abstract = "A metallic waveguide loaded with layers of complementary split ring resonator (CSRR) based metasurface is presented for accelerator and coherent source applications. This structure presents left handed behaviour arising from the strong electrical response of CSRRs which form the metasurface and the transverse field confined between the closely positioned metasurface layers. The loaded waveguide structure is known to have a TM-like mode at 5.47GHz suitable for acceleration.In this paper, the results of wakefield simulations are presented and a narrow band excitation identified around the frequency of the TM-like mode, indicating strong coupling between the beam and the field of this mode.",
author = "Emmy Sharples and Rosa Letizia",
note = "Copyright {\textcopyright} 2014 CC-BY-3.0 and by the respective authors; 5th International Particle Accelerator Conference 2014 ; Conference date: 15-06-2014 Through 20-06-2014",
year = "2014",
language = "English",
isbn = "9783954501328",
pages = "1437--1439",
booktitle = "Proceedings of IPAC2014, Dresden, Germany",
publisher = "JACoW",

}

RIS

TY - GEN

T1 - Wakefield excitation via metasurface-loaded waveguide

AU - Sharples, Emmy

AU - Letizia, Rosa

N1 - Copyright © 2014 CC-BY-3.0 and by the respective authors

PY - 2014

Y1 - 2014

N2 - A metallic waveguide loaded with layers of complementary split ring resonator (CSRR) based metasurface is presented for accelerator and coherent source applications. This structure presents left handed behaviour arising from the strong electrical response of CSRRs which form the metasurface and the transverse field confined between the closely positioned metasurface layers. The loaded waveguide structure is known to have a TM-like mode at 5.47GHz suitable for acceleration.In this paper, the results of wakefield simulations are presented and a narrow band excitation identified around the frequency of the TM-like mode, indicating strong coupling between the beam and the field of this mode.

AB - A metallic waveguide loaded with layers of complementary split ring resonator (CSRR) based metasurface is presented for accelerator and coherent source applications. This structure presents left handed behaviour arising from the strong electrical response of CSRRs which form the metasurface and the transverse field confined between the closely positioned metasurface layers. The loaded waveguide structure is known to have a TM-like mode at 5.47GHz suitable for acceleration.In this paper, the results of wakefield simulations are presented and a narrow band excitation identified around the frequency of the TM-like mode, indicating strong coupling between the beam and the field of this mode.

M3 - Conference contribution/Paper

SN - 9783954501328

SP - 1437

EP - 1439

BT - Proceedings of IPAC2014, Dresden, Germany

PB - JACoW

CY - Geneva

T2 - 5th International Particle Accelerator Conference 2014

Y2 - 15 June 2014 through 20 June 2014

ER -