Zobrazeno 1 - 10
of 73
pro vyhledávání: '"Benedikt, Rudek"'
Autor:
Benedikt Rudek, Koudai Toyota, Lutz Foucar, Benjamin Erk, Rebecca Boll, Cédric Bomme, Jonathan Correa, Sebastian Carron, Sébastien Boutet, Garth J. Williams, Ken R. Ferguson, Roberto Alonso-Mori, Jason E. Koglin, Tais Gorkhover, Maximilian Bucher, Carl Stefan Lehmann, Bertold Krässig, Stephen H. Southworth, Linda Young, Christoph Bostedt, Kiyoshi Ueda, Tatiana Marchenko, Marc Simon, Zoltan Jurek, Robin Santra, Artem Rudenko, Sang-Kil Son, Daniel Rolles
Publikováno v:
Nature Communications, Vol 9, Iss 1, Pp 1-6 (2018)
Availability of intense hard X-ray pulses allows exploration of multiple ionization effects in heavier elements. Here, the authors measure the complex charge state distributions of xenon and found a reasonable agreement by comparing with the model in
Externí odkaz:
https://doaj.org/article/5bf7f5fa932b4621a9edd0dc7ac1ae62
Autor:
B. Heide, F. Poignant, C.Y. Li, A.P. Klapproth, W.B. Li, Benedikt Rudek, Jan Schuemann, Hans Rabus, Michael Beuve, S. Di Maria, Carmen Villagrasa, Werner Friedland
Publikováno v:
Physica Medica. 80:383-388
Publikováno v:
J Appl Clin Med Phys
PURPOSE: Detector arrays and profile‐scans have widely replaced film‐measurements for quality assurance (QA) on linear accelerators. Film is still used for relative output factor (ROF) measurements, positioning, and dose‐profile verification fo
Autor:
Rico Mayro P. Tanyag, Charles Bernando, Curtis F. Jones, Camila Bacellar, Ken R. Ferguson, Denis Anielski, Rebecca Boll, Sebastian Carron, James P. Cryan, Lars Englert, Sascha W. Epp, Benjamin Erk, Lutz Foucar, Luis F. Gomez, Robert Hartmann, Daniel M. Neumark, Daniel Rolles, Benedikt Rudek, Artem Rudenko, Katrin R. Siefermann, Joachim Ullrich, Fabian Weise, Christoph Bostedt, Oliver Gessner, Andrey F. Vilesov
Publikováno v:
Structural Dynamics, Vol 2, Iss 5, Pp 051102-051102-9 (2015)
Lensless x-ray microscopy requires the recovery of the phase of the radiation scattered from a specimen. Here, we demonstrate a de novo phase retrieval technique by encapsulating an object in a superfluid helium nanodroplet, which provides both a phy
Externí odkaz:
https://doaj.org/article/9e61be909d3d4977a69171f5cf59a447
Autor:
Marco Antonio Chaer Nascimento, Felipe Fantuzzi, Heidy M Quitián-Lara, Heloisa M. Boechat-Roberty, Wania Wolff, Benedikt Rudek, Gerhard Hilgers
Publikováno v:
Physical Chemistry Chemical Physics. 21:24984-24992
Ring strain energy is a very well documented feature of neutral cycloalkanes, and influences their structural, thermochemical and reactivity properties. In this work, we apply density functional theory and high-level coupled cluster calculations to d
Autor:
Karl T. Butterworth, Yaser Hadi Gholami, Kyle Bromma, Vincent Favaudon, Zdenka Kuncic, Jason R. Cook, Udoka Ibeh, Stéphane Lucas, Stephen J. McMahon, E. Gargioni, Sandrine Lacombe, Kevin M. Prise, Anne-Catherine Heuskin, Léon Sanche, Yaroslav Stanishevskiy, Olivier Tillement, Bijay Singh, Henry M. Smilowitz, Sang Hyun Cho, J Donald Payne, Needa A. Virani, Erika Porcel, Ross Berbeco, Wonmo Sung, Félicien Hespeels, Benedikt Rudek, Dmitry Nevozhay, Wassana Yantasee, Hans Rabus, Devika B. Chithrani, Wilfred Ngwa, Sébastien Penninckx, François Lux, Konstantin V Sokolov, Sharif M Ridwan, Jan Schuemann, H L Byrne, Alexander F. Bagley, Sunil Krishnan, James F. Hainfeld, Srinivas Sridhar, Sijumon Kunjachan
Publikováno v:
Physics in Medicine and Biology
Physics in Medicine and Biology, IOP Publishing, 2020, 65 (21), pp.21RM02. ⟨10.1088/1361-6560/ab9159⟩
Schuemann, J, Bagley, A, Berbeco, R, Bromma, K, Butterworth, K T, Byrne, H, Chithrani, D B, Cho, S H, Cook, J R, Favaudon, V, Gholami, Y H, Gargioni, E, Hainfeld, J F, Hespeels, F, Heuskin, A-C, Ibeh, U M, Kuncic, Z, Kunjachan, S, Lacombe, S, Lucas, S, Lux, F, McMahon, S J, Nevozhay, D, Ngwa, W, Payne, J D, Penninckx, S, Porcel, E, Prise, K M, Rabus, H, Ridwan, S M, Rudek, B, Sanche, L, Singh, B, Smilowitz, H M, Sokolov, K V, Sridhar, S, Stanishevskiy, Y, Sung, W, Tillement, O, Virani, N A, Yantasee, W & Krishnan, S 2020, ' Roadmap for metal nanoparticles in radiation therapy : current status, translational challenges, and future directions ', Physics in Medicine and Biology, vol. 65, no. 21, 21RM02 . https://doi.org/10.1088/1361-6560/ab9159
Schuemann, J, Bagley, A, Berbeco, R, Bromma, K, Butterworth, K T, Byrne, H, Chithrani, D B, Cho, S H, Cook, J R, Favaudon, V, Gholami, Y H, Gargioni, E, Hainfeld, J F, Hespeels, F, Heuskin, A-C, Ibeh, U M, Kuncic, Z, Kunjachan, S, Lacombe, S, Lucas, S, Lux, F, McMahon, S J, Nevozhay, D, Ngwa, W, Payne, J D, Penninckx, S, Porcel, E, Prise, K M, Rabus, H, Ridwan, S M, Rudek, B, Sanche, L, Singh, B, Smilowitz, H M, Sokolov, K V, Sridhar, S, Stanishevskiy, Y, Sung, W, Tillement, O, Virani, N A, Yantasee, W & Krishnan, S 2020, ' Roadmap for metal nanoparticles in radiation therapy: current status, translational challenges, and future directions ', Physics in Medicine and Biology . https://doi.org/10.1088/1361-6560/ab9159
Physics in Medicine and Biology, IOP Publishing, 2020, 65 (21), pp.21RM02. ⟨10.1088/1361-6560/ab9159⟩
Schuemann, J, Bagley, A, Berbeco, R, Bromma, K, Butterworth, K T, Byrne, H, Chithrani, D B, Cho, S H, Cook, J R, Favaudon, V, Gholami, Y H, Gargioni, E, Hainfeld, J F, Hespeels, F, Heuskin, A-C, Ibeh, U M, Kuncic, Z, Kunjachan, S, Lacombe, S, Lucas, S, Lux, F, McMahon, S J, Nevozhay, D, Ngwa, W, Payne, J D, Penninckx, S, Porcel, E, Prise, K M, Rabus, H, Ridwan, S M, Rudek, B, Sanche, L, Singh, B, Smilowitz, H M, Sokolov, K V, Sridhar, S, Stanishevskiy, Y, Sung, W, Tillement, O, Virani, N A, Yantasee, W & Krishnan, S 2020, ' Roadmap for metal nanoparticles in radiation therapy : current status, translational challenges, and future directions ', Physics in Medicine and Biology, vol. 65, no. 21, 21RM02 . https://doi.org/10.1088/1361-6560/ab9159
Schuemann, J, Bagley, A, Berbeco, R, Bromma, K, Butterworth, K T, Byrne, H, Chithrani, D B, Cho, S H, Cook, J R, Favaudon, V, Gholami, Y H, Gargioni, E, Hainfeld, J F, Hespeels, F, Heuskin, A-C, Ibeh, U M, Kuncic, Z, Kunjachan, S, Lacombe, S, Lucas, S, Lux, F, McMahon, S J, Nevozhay, D, Ngwa, W, Payne, J D, Penninckx, S, Porcel, E, Prise, K M, Rabus, H, Ridwan, S M, Rudek, B, Sanche, L, Singh, B, Smilowitz, H M, Sokolov, K V, Sridhar, S, Stanishevskiy, Y, Sung, W, Tillement, O, Virani, N A, Yantasee, W & Krishnan, S 2020, ' Roadmap for metal nanoparticles in radiation therapy: current status, translational challenges, and future directions ', Physics in Medicine and Biology . https://doi.org/10.1088/1361-6560/ab9159
International audience; This roadmap outlines the potential roles of metallic nanoparticles (MNPs) in the field of radiation therapy. MNPs made up of a wide range of materials (from Titanium, Z = 22, to Bismuth, Z = 83) and a similarly wide spectrum
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::1af6bf88aae3a706b77573aa402abcdf
https://hal.archives-ouvertes.fr/hal-02992974
https://hal.archives-ouvertes.fr/hal-02992974
Publikováno v:
Journal of Applied Clinical Medical Physics
Purpose The treatment couch position of a patient in external beam radiation therapy (EBRT) is usually acquired during initial treatment setup. This procedure has shown potential failure modes leading to near misses and adverse events in radiation tr
Autor:
Werner Friedland, C.Y. Li, Etienne Testa, Y.Z. Chen, A. Belchior, F. Poignant, Hans Rabus, Junli Li, B. Heide, Nora Hocine, Gabriele Multhoff, R. Qiu, Benedikt Rudek, Carmen Villagrasa, W.B. Li, A.P. Klapproth, Stefan Stangl, Yibao Zhang, Benoit Gervais, W.Z. Xie, S. Di Maria, Andrei Ipatov, Jan Schuemann, Michael Beuve
Publikováno v:
Phys. Med. 69, 147-163 (2020)
Physica Medica
Physica Medica, 2020, 69, pp.147-163. ⟨10.1016/j.ejmp.2019.12.011⟩
Phys Med
Physica Medica, Elsevier, 2020, 69, pp.147-163. ⟨10.1016/j.ejmp.2019.12.011⟩
Physica Medica
Physica Medica, 2020, 69, pp.147-163. ⟨10.1016/j.ejmp.2019.12.011⟩
Phys Med
Physica Medica, Elsevier, 2020, 69, pp.147-163. ⟨10.1016/j.ejmp.2019.12.011⟩
Corrigendum to “Intercomparison of dose enhancement ratio and secondary electron spectra for gold nanoparticles irradiated by X-rays calculated using multiple Monte Carlo simulation codes” [Phys. Med. 69 (2020) 147–163] (Physica Medica (2020) 6
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::8ebe05a964c100123b97da50a19b7442
https://push-zb.helmholtz-muenchen.de/frontdoor.php?source_opus=58462
https://push-zb.helmholtz-muenchen.de/frontdoor.php?source_opus=58462
Autor:
Bertold Krässig, Sébastien Boutet, Sebastian Carron, Tais Gorkhover, Robin Santra, Kiyoshi Ueda, Benjamin Erk, Benedikt Rudek, Christoph Bostedt, J. Correa, Stephen H. Southworth, Lutz Foucar, Marc Simon, Maximilian Bucher, C. S. Lehmann, Roberto Alonso-Mori, Daniel Rolles, Sang-Kil Son, Tatiana Marchenko, Cédric Bomme, Rebecca Boll, Ken R. Ferguson, Zoltan Jurek, Garth J. Williams, Koudai Toyota, Jason E. Koglin, Linda Young, Artem Rudenko
Publikováno v:
Nature Communications, Vol 9, Iss 1, Pp 1-6 (2018)
Nature Communications
Nature Communications, Nature Publishing Group, 2018, 9 (1), ⟨10.1038/s41467-018-06745-6⟩
Nature Communications 9(1), 4200 (2018). doi:10.1038/s41467-018-06745-6
Nature Communications
Nature Communications, Nature Publishing Group, 2018, 9 (1), ⟨10.1038/s41467-018-06745-6⟩
Nature Communications 9(1), 4200 (2018). doi:10.1038/s41467-018-06745-6
An accurate description of the interaction of intense hard X-ray pulses with heavy atoms, which is crucial for many applications of free-electron lasers, represents a hitherto unresolved challenge for theory because of the enormous number of electron
Publikováno v:
Journal of the American Chemical Society. 140:4288-4292
In free-radical halogenation of aromatics, singly charged ions are usually formed as intermediates. These stable species can be easily observed by time-of-flight mass spectrometry (TOF-MS). Here we used electron and proton beams to ionize chlorobenze