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1

Bystrit͡skiĭ, V. M. High-power ion beams. New York: American Institute of Physics, 1989.

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2

Orloff, Jon. High Resolution Focused Ion Beams: FIB and its Applications: The Physics of Liquid Metal Ion Sources and Ion Optics and Their Application to Focused Ion Beam Technology. Boston, MA: Springer US, 2003.

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3

W, Wilson John. Range and energy straggling in ion beam transport. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 2000.

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4

1934-, Swanson Lynwood, and Utlaut Mark William 1949-, eds. High resolution focused ion beams: FIB and its applications : the physics of liquid metal ion sources and ion optics and their application to focused ion beam technology. New York: Kluwer Academic/Plenum Publishers, 2003.

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5

Orloff, Jon. High resolution focused ion beams: FIB and its applications ; the physics of liquid metal ion sources and ion optics and their application to focused ion beam technology. New York, NY: Kluwer Academic/Plenum Publishers, 2003.

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6

Schmidt, Bernd. Ion Beams in Materials Processing and Analysis. Vienna: Springer Vienna, 2013.

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7

Kiriakidis, G. Erosion and Growth of Solids Stimulated by Atom and Ion Beams. Dordrecht: Springer Netherlands, 1986.

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8

V, Pleshivt͡s︡ev N., and Semashko N. N, eds. Ion and atomic beams for controlled fusion and technology. New York: Consultants Bureau, 1989.

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9

The physics of submicron lithography. New York: Plenum Press, 1992.

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10

Spalvins, Talivaldis. Advances and directions of ion nitriding/carburizing. Cleveland, Ohio: Lewis Research Center, 1989.

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11

Ahovi, Kponou, Makdisi Yousef I, and Zelenski Anatoli, eds. PSTP 2007: 12th International Workshop on Polarized Ion Sources, Targets and Polarimetry, Upton, New York, 10-14 September 2007. Melville, N.Y: American Institute of Physics, 2008.

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12

Milani, Paolo. Cluster Beam Synthesis of Nanostructured Materials. Berlin, Heidelberg: Springer Berlin Heidelberg, 1999.

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13

G, Kiriakidis, Carter G. 1934-, Whitton J. L, and North Atlantic Treaty Organization. Scientific Affairs Division., eds. Erosion and growth of solids stimulated by atom and ion beams. Dordrecht: Martinus Nijhoff Publishers in cooperation with NATO Scientific Affairs Division, 1986.

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14

Schlüter, H. Advanced Technologies Based on Wave and Beam Generated Plasmas. Dordrecht: Springer Netherlands, 1999.

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15

International Symposium on Heavy Ion Physics and its Applications (2nd 1995 Lanzhou, China). Proceedings of the second international symposium: Heavy ion physics and its applications : 29 August-1 September 1995, Lanzhou, China. Edited by Luo Y. X. 1944-, Jin G. M. 1943-, and Liu J. Y. 1936-. River Edge, NJ: World Scientific Publ., 1996.

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16

Zaika, N. I. Fizika i tekhnika poli͡a︡rizovannykh puchkov ionov. Kiev: Nauk. dumka, 1987.

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17

Souza, Ana Cecilia de Azevedo e., ed. Collision processes of ion, positron, electron and photon beams with matter: Proceedings of the Latin American School of Physics, Caxambu, MG, Brazil, 4-24 August 1991. Singapore: World Scientific, 1992.

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18

Seminar on Problems of Theoretical and Applied Electron and Ion Optics (7th 2005 Moscow, Russia). Seventh Seminar on Problems of Theoretical and Applied Electron and Ion Optics: 25-27 May 2005, Moscow, Russia. Edited by Filachev Anatoly M, Gaidoukova Inna S, Russia (Federation). Federalʹnoe agenstvo po promyshlennosti., Rossiĭskai︠a︡ akademii︠a︡ nauk, Society of Photo-optical Instrumentation Engineers., Society of Photo-optical Instrumentation Engineers. Russian Chapter., and State Scientific Center of the Russian Federation RD&P Center ORION. Bellingham, Wash: SPIE, 2006.

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19

Workshop, on the Production of Intense Beams of Highly Charged Ions (2000 Catania Italy). PIBHI-2000: Proceedings of the workshop on the production of intense beams of highly charged ions : Catania, 24-27 September 2000. Bologna: Italian Physical Society, 2001.

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20

Giorgio, Giacomelli, Spurio Maurizio, and SpringerLink (Online service), eds. Particles and Fundamental Interactions: Supplements, Problems and Solutions: A Deeper Insight into Particle Physics. Dordrecht: Springer Netherlands, 2012.

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21

RIAO/OPTILAS, 2007 (2007 Campinas São Paulo Brazil). RIAO/OPTILAS 2007: 6th Ibero-American Conference on Optics (RIAO) and the 9th Latin-American Meeting on Optics, Lasers, and Applications (OPTILAS) : Campinas, São Paulo, Brazil; 21-26 October 2007. Melville, N.Y: American Institute of Physics, 2008.

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22

Akkerman, A. F. Modelirovanie traektoriĭ zari͡a︡zhennykh chastit͡s︡ v veshchestve. Moskva: Ėnergoatomizdat, 1991.

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23

Giorgio, Giacomelli, Spurio Maurizio, and SpringerLink (Online service), eds. Particelle e interazioni fondamentali: Il mondo delle particelle. 2nd ed. Milano: Springer Milan, 2012.

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24

Surviving HIV/AIDS in the inner city: How resourceful Latinas beat the odds. New Brunswick, N.J: Rutgers University Press, 2011.

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25

V, Andreev A., Natsyi͡a︡nalʹnai͡a︡ akadėmii͡a︡ navuk Belarusi, Belaruski rėspublikanski fond fundamentalʹnykh dasledavanni͡a︡ŭ., and Society of Photo-optical Instrumentation Engineers., eds. ICONO 2001: Fundamental aspects of laser-matter interaction and Physics of nanostructures : 26 June-1 July 2001, Minsk, Belarus. Bellingham, Wash., USA: SPIE, 2002.

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26

Ahmad, Ishaq. Ion Beam Techniques and Applications. IntechOpen, 2020.

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27

Ion beam assisted film growth. Amsterdam: Elsevier, 1989.

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28

Paolo, Mazzoldi, and Arnold George W, eds. Ion beam modification of insulators. Amsterdam: Elsevier, 1987.

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29

1955-, Patterson Michael J., and United States. National Aeronautics and Space Administration., eds. Ion beam sputtering in electric propulsion facilities. [Washington, DC]: National Aeronautics and Space Administration, 1991.

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30

Ion Beam Therapy Fundamentals Technology Clinical Applications. Springer, 2011.

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31

Bystritskii, Vitalii Mikhailovich, and A. N. Didenko. High Power Ion Beams (Translation Series). AIP Press, 1989.

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32

Götz, Gerhard, Prof. Dr. sc. nat. and Gärtner Konrad, eds. High energy ion beam analysis of solids. Berlin: Akademie-Verlag, 1988.

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33

Polarized Proton Ion Sources (AIP Conference Proceedings). American Institute of Physics, 1998.

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34

Bernas, Harry. Materials Science with Ion Beams. Springer, 2009.

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35

Materials Science With Ion Beams. Springer, 2009.

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36

(Editor), Krisch, and Lin (Editor), eds. Polarized Proton Ion Sources (AIP Conference Proceedings). American Institute of Physics, 1998.

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37

Wetzig, Klaus, and Bernd Schmidt. Ion Beams in Materials Processing and Analysis. Schmidt Bernd, 2014.

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38

(Editor), Lucille A. Giannuzzi, and Fred A. Stevie (Editor), eds. Introduction to Focused Ion Beams: Instrumentation, Theory, Techniques and Practice. Springer, 2004.

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39

J, Mirtich Michael, Curren Arthur N, and United States. National Aeronautics and Space Administration., eds. Ion beam treatment of potential space materials at the NASA Lewis Research Center. [Washington, DC]: National Aeronautics and Space Administration, 1991.

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40

Kiriakidis, G. Erosion and Growth of Solids Stimulated by Atom and Ion Beams. Springer, 2011.

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41

Space charge dominated beam physics for heavy ion fusion: Saitama, Japan, December 1998. Woodbury, N.Y: American Institute of Physics, 1999.

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42

Processing and Characterization of Materials Using Ion Beams: Volume 128. University of Cambridge ESOL Examinations, 2014.

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43

W, Anderson L., Haeberli W, and Workshop on Polarized Ion Sources and Polarized Gas Targets (1993 : Madison, Wis.), eds. Polarized ion sources and polarized gas targets: Madison, WI, 1993. New York: American Institute of Physics, 1994.

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44

Center, Lewis Research, ed. Advances and directions of ion nitriding/carburizing. Cleveland, Ohio: Lewis Research Center, 1989.

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45

Cluster Beam Synthesis of Nanostructured Materials. Springer, 2012.

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46

Venables, Karen. Basic physics. Oxford University Press, 2013. http://dx.doi.org/10.1093/med/9780199696567.003.0002.

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Chapter 2 discusses the basic physics of external beam therapy, and addresses that distribution of radiation within the patient will be affected by many factors. These include the energy and modality of the beam, the density of the tissue, the use of beam modifiers such as wedges and compensators, and the distance of the patient from the machine. The apparent distribution will also be affected by the accuracy of the algorithm used in the planning system.
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47

Hoskin, Peter, ed. External Beam Therapy. Oxford University Press, 2013. http://dx.doi.org/10.1093/med/9780199696567.001.0001.

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External Beam Therapy, Second Edition is an essential, practical resource to guide the use of external beam radiotherapy, highlighting the rapid technological advances made in recent years. It provides a firm background to the physics of external beam radiotherapy, taking the user through the basic principles and discussing issues such as quality assurance.
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48

Atomic and Nuclear Analytical Methods: XRF, Mössbauer, XPS, NAA and Ion-Beam Spectroscopic Techniques. Springer-Verlag, Heidelberg, Germany, 2007.

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49

Hoskin, Peter. External Beam Therapy. Oxford University Press, 2019. http://dx.doi.org/10.1093/med/9780198786757.001.0001.

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A comprehensive guide to radiotherapy planning and delivery. Initial chapters give detailed insight into the fundamentals of clinical radiotherapy including the physics of photon and electron beams, protons and stereotactic body radiotherapy. This is followed by systematic details for each tumour site commonly treated with radiotherapy. All chapters follow a similar template so that the reader can find information in an ordered and familiar format. The final chapter covers the all-important aspect of quality assurance in radiotherapy delivery.
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50

(Editor), L. W. Anderson, and W. Haeberli (Editor), eds. Polarized Ion Sources and Polarized Gas Targets: Proceedings of the Workshop held in Madison, Wisconsin, May 1993 (AIP Conference Proceedings). American Institute of Physics, 1998.

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