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Load Curves Distortion Induced by Fringe Field Effects in the Ion Nanoprobe. / Andrianov, S.N.; Tereshonkov, Yu.

Proceedings of the 2008 European Particle Accelerator Conference - EPAC'08. 2008. p. 1504-1506 TUPD039.

Research output: Chapter in Book/Report/Conference proceedingArticle in an anthologyResearch

Harvard

Andrianov, SN & Tereshonkov, Y 2008, Load Curves Distortion Induced by Fringe Field Effects in the Ion Nanoprobe. in Proceedings of the 2008 European Particle Accelerator Conference - EPAC'08., TUPD039, pp. 1504-1506, 11th European Particle Accelerator Conference, EPAC 2008, Genoa, Italy, 23/06/08. <http://accelconf.web.cern.ch/accelconf/e08/papers/tupd039.pdf>

APA

Andrianov, S. N., & Tereshonkov, Y. (2008). Load Curves Distortion Induced by Fringe Field Effects in the Ion Nanoprobe. In Proceedings of the 2008 European Particle Accelerator Conference - EPAC'08 (pp. 1504-1506). [TUPD039] http://accelconf.web.cern.ch/accelconf/e08/papers/tupd039.pdf

Vancouver

Andrianov SN, Tereshonkov Y. Load Curves Distortion Induced by Fringe Field Effects in the Ion Nanoprobe. In Proceedings of the 2008 European Particle Accelerator Conference - EPAC'08. 2008. p. 1504-1506. TUPD039

Author

Andrianov, S.N. ; Tereshonkov, Yu. / Load Curves Distortion Induced by Fringe Field Effects in the Ion Nanoprobe. Proceedings of the 2008 European Particle Accelerator Conference - EPAC'08. 2008. pp. 1504-1506

BibTeX

@inbook{523889b9ad9e43549742ed65562936a5,
title = "Load Curves Distortion Induced by Fringe Field Effects in the Ion Nanoprobe",
abstract = "Nanoprobes are known to be high precision systems, which require preliminary modeling for thorough analysis of optimal working modes. One of most crucial characteristics of the special class of such beam lines is the so-called load curves (or surfaces). This paper investigates one of the types of intrinsic effects, i.e. fringe fields and their influence on load curves and surfaces, which make it possible to construct the purposeful search of optimal working regimes for nanoprobes. A number of different models for fringe field presentation are discussed in the paper. Analytical and numerical methods and tools are used for analysis and selection of optimal parameters for fringe field models.",
author = "S.N. Andrianov and Yu. Tereshonkov",
year = "2008",
language = "English",
pages = "1504--1506",
booktitle = "Proceedings of the 2008 European Particle Accelerator Conference - EPAC'08",
note = "11th European Particle Accelerator Conference, EPAC 2008, EPAC{\textquoteright}08 ; Conference date: 23-06-2008 Through 27-06-2008",

}

RIS

TY - CHAP

T1 - Load Curves Distortion Induced by Fringe Field Effects in the Ion Nanoprobe

AU - Andrianov, S.N.

AU - Tereshonkov, Yu.

PY - 2008

Y1 - 2008

N2 - Nanoprobes are known to be high precision systems, which require preliminary modeling for thorough analysis of optimal working modes. One of most crucial characteristics of the special class of such beam lines is the so-called load curves (or surfaces). This paper investigates one of the types of intrinsic effects, i.e. fringe fields and their influence on load curves and surfaces, which make it possible to construct the purposeful search of optimal working regimes for nanoprobes. A number of different models for fringe field presentation are discussed in the paper. Analytical and numerical methods and tools are used for analysis and selection of optimal parameters for fringe field models.

AB - Nanoprobes are known to be high precision systems, which require preliminary modeling for thorough analysis of optimal working modes. One of most crucial characteristics of the special class of such beam lines is the so-called load curves (or surfaces). This paper investigates one of the types of intrinsic effects, i.e. fringe fields and their influence on load curves and surfaces, which make it possible to construct the purposeful search of optimal working regimes for nanoprobes. A number of different models for fringe field presentation are discussed in the paper. Analytical and numerical methods and tools are used for analysis and selection of optimal parameters for fringe field models.

UR - https://accelconf.web.cern.ch/e08/html/author.htm

M3 - Article in an anthology

SP - 1504

EP - 1506

BT - Proceedings of the 2008 European Particle Accelerator Conference - EPAC'08

T2 - 11th European Particle Accelerator Conference, EPAC 2008

Y2 - 23 June 2008 through 27 June 2008

ER -

ID: 4440854