{"id":445,"date":"2019-09-02T12:42:23","date_gmt":"2019-09-02T10:42:23","guid":{"rendered":"https:\/\/oktatok.reak.bme.hu\/kdp\/?page_id=445"},"modified":"2019-09-02T14:54:45","modified_gmt":"2019-09-02T12:54:45","slug":"publikaciok","status":"publish","type":"page","link":"https:\/\/oktatok.reak.bme.hu\/kdp\/publikaciok\/","title":{"rendered":"Publik\u00e1ci\u00f3k"},"content":{"rendered":"<p><strong>Refer\u00e1lt foly\u00f3iratcikkek:<\/strong><\/p>\n<ul>\n<li>K\u00e1lm\u00e1n, T. Keszthelyi, D. <strong><u>Kis<\/u><\/strong>: \u201eSolid state modified nuclear process\u201d EPJ Applied Physics (2008)<\/li>\n<li>K\u00e1lm\u00e1n, T. Keszthelyi, D. <strong><u>Kis<\/u><\/strong>: \u201eBoson induced nuclear fusion\u00a0in cristallyne solids\u201d EPJ Applied Physics (2010)<\/li>\n<li><strong><u>Kis<\/u><\/strong>, P. K\u00e1lm\u00e1n, T. Keszthelyi, J. Sz\u00edv\u00f3s: &#8222;Internal-conversion process in superintense ultrashort x-ray pulses&#8221;, APS Phys. Rev. A, Vol. 81,\u00a0Iss. 1\u00a0(2010)<\/li>\n<li><strong><u>Kis,<\/u><\/strong> P. K\u00e1lm\u00e1n, T. Keszthelyi: &#8222;Intense few-cycle pulse induced internal conversion process&#8221;, APS Phys. Rev. A, Vol. 82. Iss. 1\u00a0( 2010)<\/li>\n<li>P. K\u00e1lm\u00e1n, <strong>D. Kis<\/strong>, T. Keszthelyi: \u201eNear-threshold laser-modified proton emission in the nuclear photoeffect\u201d, APS Phys. Rev. A, Vol. 87. 063415 (2013)<\/li>\n<li>P. K\u00e1lm\u00e1n, <strong>D. Kis<\/strong>, T. Keszthelyi: \u201eLaser-assisted nuclear photoeffect re-examined\u201d, IJNEST Vol. 8. No. 3. p.: 179-191 (2014)<\/li>\n<li><strong>Kis D\u00e1niel P\u00e9ter<\/strong>: Magfizikai folyamatok intenz\u00edv l\u00e9zert\u00e9rben I., Nukleon 7 \u00e9vf. 4. sz\u00e1m, 175, 2014<\/li>\n<li>Thornton DA, Wagemans J, Fernandes AC, Girard JM, <strong><u>Kis DP<\/u><\/strong>, Klupak V, Mutnuru R, Philibert H, Rousseau G, Santos JP, Seren T, Zsolnay EM: \u201eThe EWGRD Round Robin Measurement Exercise\u201d, EPJ WEB OF CONFERENCES 106: Paper 06005. 10 p. (2016)<\/li>\n<li><strong>D. P. Kis<\/strong>, Z. Szatmary: \u201eExamination of stochastic and deterministic perturbations in reactor physics\u201d, JOURNAL OF COMPUTATIONAL AND THEORETICAL TRANSPORT 45:(6) pp. 486-499. (2016)<\/li>\n<li><strong>D. P. Kis<\/strong>, R. Szilv\u00e1sy: \u201eThree dimensional $\\alpha$-tunneling in intense laser fields\u201d, Vol. 45. No. 4. 045103, JPG,\u00a0 (2018)<\/li>\n<\/ul>\n<hr \/>\n<p><strong>K\u00f6nyv \u00e9s\/vagy k\u00f6nyvfejezet:<\/strong><\/p>\n<ul>\n<li>Makai Mih\u00e1ly, <strong><u>Kis D\u00e1niel P\u00e9ter<\/u><\/strong>, V\u00e9gh J\u00e1nos: \u201eGlobal Neutron Calculations\u201d, Sharjah: Bentham Science Publishers Ltd., 2015. 552 p. (ISBN:978-1-68108-028-4)<\/li>\n<\/ul>\n<hr \/>\n<p><strong>TDK:<\/strong><\/p>\n<ul>\n<li>Kis D\u00e1niel P\u00e9ter, Talli\u00e1n Mikl\u00f3s: Neutronspektrum \u00e9s neutronfluxus-eloszl\u00e1s k\u00eds\u00e9rleti vizsg\u00e1lata az Oktat\u00f3reaktor F3-as jel\u0171 f\u00fcgg\u0151leges besug\u00e1rz\u00f3 csatorn\u00e1j\u00e1ban (2003), 2003 BME-TTK\/1. helyezett, 2004 OTDK\/Kiemelt k\u00fcl\u00f6nd\u00edj<\/li>\n<\/ul>\n<hr \/>\n<p><strong>Diplomamunka<\/strong><\/p>\n<ul>\n<li>Kis D\u00e1niel P\u00e9ter: <a href=\"https:\/\/oktatok.reak.bme.hu\/kdp\/wp-content\/uploads\/sites\/19\/2019\/09\/diploma3.pdf\">Spont\u00e1n s\u00e9rtett m\u00e9rt\u00e9kelm\u00e9letek extra dimenzi\u00f3ban<\/a>, 2006<\/li>\n<\/ul>\n<hr \/>\n<p><strong>Doktori Disszert\u00e1ci\u00f3<\/strong><\/p>\n<ul>\n<li>Kis D\u00e1niel P\u00e9ter: <a href=\"https:\/\/oktatok.reak.bme.hu\/kdp\/wp-content\/uploads\/sites\/19\/2019\/09\/kis_disszertacio.pdf\">Magfizikai folyamatok intenz\u00edv l\u00e9zert\u00e9rben<\/a>, 2015<\/li>\n<li><a href=\"https:\/\/oktatok.reak.bme.hu\/kdp\/wp-content\/uploads\/sites\/19\/2019\/09\/kis_thesis.pdf\">Thesis<\/a><\/li>\n<\/ul>\n<hr \/>\n<p><strong>Kutat\u00e1si jelent\u00e9sek:<\/strong><\/p>\n<ol>\n<li>Kis D\u00e1niel P\u00e9ter: A POWEX-K\/MI modell neutronfizikai modulja (elemz\u00e9s \u00e9s ellen\u0151rz\u00e9s), BME-NTI-375\/2007<\/li>\n<li>Kis D\u00e1niel P\u00e9ter, Paitz G\u00e1bor: Az APrOWEX neutronfizikai k\u00f3d \u00e9s az APROS termohidraulikai modell csatol\u00e1sa (st\u00e1tusz riport), BME-NTI-393\/2007<\/li>\n<li>Zsolnay \u00c9va, Czifrus Szabolcs, Kis D\u00e1niel P\u00e9ter: A PAKSI ATOMER\u0150M\u0170 3. SZ\u00c1M\u00da REAKTORBLOKKJ\u00c1N, A REAKTORTART\u00c1LY K\u00dcLS\u0150 FEL\u00dcLET\u00c9N\u00c9L 104 % \u00c9S 108 % REAKTORTELJESITM\u00c9NYEKEN BESUG\u00c1RZOTT NEUTRONMONITOROK VIZSG\u00c1LATI PROGRAMJ\u00c1NAK KIDOLGOZ\u00c1SA \u00c9S ENNEK ALAPJ\u00c1N A NEUTRONMONITOROK V\u00c1LASZ\u00c1NAK KI\u00c9RT\u00c9KEL\u00c9SE, BME-NTI-534\/2010<\/li>\n<li>Szatm\u00e1ry Zolt\u00e1n, Kis D\u00e1niel P\u00e9ter: Technol\u00f3giai bizonytalans\u00e1gok hat\u00e1sa a reaktorfizikai param\u00e9terekre (IV. r\u00e9sz), BME-NTI-539\/2010<\/li>\n<li>Szatm\u00e1ry Zolt\u00e1n, Kis D\u00e1niel P\u00e9ter: Technol\u00f3giai bizonytalans\u00e1gok hat\u00e1sa a reaktorfizikai param\u00e9terekre (V. r\u00e9sz), BME-NTI-572\/2011<\/li>\n<li>Szatm\u00e1ry Zolt\u00e1n, Kis D\u00e1niel P\u00e9ter: Technol\u00f3giai bizonytalans\u00e1gok hat\u00e1sa a reaktorfizikai param\u00e9terekre (VI. r\u00e9sz), BME-NTI-590\/2012<\/li>\n<li>D\u00e1niel P. Kis, \u00c9va Zsolnay, G\u00e1bor Rad\u00f3cz: RESULTS OF THE SPECIFIC ACTIVITY MEASUREMENTS OF REACTOR DOSIMETRY DETECTORS IN FRAME OF THE \u201cROUND ROBIN\u201d EXERCISE (riport), BME-NTI-588\/2012<\/li>\n<li>Zsolnay \u00c9va, Czifrus Szabolcs, Kis D\u00e1niel P\u00e9ter: A paksi atomer\u0151m\u0171 2. sz\u00e1m\u00fa reaktorblokkj\u00e1n, a reaktortart\u00e1ly k\u00fcls\u0151 fel\u00fclet\u00e9n\u00e9l a 28. reaktorkamp\u00e1ny sor\u00e1n besug\u00e1rzott neutronmonitorok v\u00e1lasz\u00e1nak ki\u00e9rt\u00e9kel\u00e9se I. R\u00e9sztanulm\u00e1ny, BME-NTI-643\/2013A<\/li>\n<li>Zsolnay \u00c9va, Czifrus Szabolcs, Kis D\u00e1niel P\u00e9ter: A paksi atomer\u0151m\u0171 2. sz\u00e1m\u00fa reaktorblokkj\u00e1n, a reaktortart\u00e1ly k\u00fcls\u0151 fel\u00fclet\u00e9n\u00e9l a 28. reaktorkamp\u00e1ny sor\u00e1n besug\u00e1rzott neutronmonitorok v\u00e1lasz\u00e1nak ki\u00e9rt\u00e9kel\u00e9se. Tanulm\u00e1ny, BME-NTI-643\/2013<\/li>\n<li>Zsolnay \u00c9va, Czifrus Szabolcs, Kis D\u00e1niel P\u00e9ter: A PAKSI ATOMER\u0150M\u0170 2. SZ\u00c1M\u00da REAKTORBLOKKJ\u00c1N A REAKTORTART\u00c1LY K\u00dcLS\u0150 FEL\u00dcLET\u00c9N\u00c9L A 28. REAKTORKAMP\u00c1NY SOR\u00c1N BESUG\u00c1RZOTT NEUTRONMONITOROK V\u00c1LASZ\u00c1NAK KI\u00c9RT\u00c9KEL\u00c9SE, BME-NTI-643\/2014<\/li>\n<li>Zsolnay \u00c9va, Czifrus Szabolcs, Kis D\u00e1niel P\u00e9ter: \u00dcREGDOZIMETRIA PAKSI ATOMER\u0150M\u0170 2. SZ\u00c1M\u00da REAKTORBLOKK 29. REAKTORKAMP\u00c1NY, BME-NTI-700\/2014<\/li>\n<li>Zsolnay \u00c9va, Czifrus Szabolcs, Kis D\u00e1niel P\u00e9ter: \u00dcREGDOZIMETRIA PAKSI ATOMER\u0150M\u0170 2. SZ\u00c1M\u00da REAKTORBLOKK 30. REAKTORKAMP\u00c1NY, BME-NTI-737\/2015<\/li>\n<li>Kis D\u00e1niel P\u00e9ter, Horv\u00e1th Andr\u00e1s, Szatm\u00e1ry Zolt\u00e1n: Sztatikus diff\u00fazi\u00f3s k\u00f3d tesztel\u00e9se, BME-NTI-752\/2015<\/li>\n<li>Zsolnay \u00c9va, Czifrus Szabolcs, Kis D\u00e1niel P\u00e9ter: REAKTORDOZIMETRIA PAKSI ATOMER\u0150M\u0170 1. SZ\u00c1M\u00da REAKTORBLOKK, REAKTORTART\u00c1LY FEL\u00dcGYELETI POZ\u00cdCI\u00d3, 4 \u00c9VEN \u00c1T (29.-32. SZ\u00c1M\u00da REAKTORKAMP\u00c1NY) BESUG\u00c1RZOTT NEUTRONMONITOROK (UHEP2 MINTAF\u0170Z\u00c9R) V\u00c1LASZ\u00c1NAK KI\u00c9RT\u00c9KEL\u00c9SE, BME-NTI-814\/2017<\/li>\n<li>Kis D\u00e1niel P\u00e9ter, Horv\u00e1th Andr\u00e1s, Csengeri Eszter, Szatm\u00e1ry Zolt\u00e1n: 3D-s id\u0151f\u00fcgg\u0151 diff\u00fazi\u00f3s k\u00f3d fejleszt\u00e9se, BME-NTI-805\/2017<\/li>\n<li>Kis D\u00e1niel P\u00e9ter, Horv\u00e1th Andr\u00e1s, Csige Andr\u00e1s, Babcs\u00e1ny Bogl\u00e1rka: A reaktorfizikai k\u00f3d csatol\u00e1s az APROS rendszerk\u00f3dhoz, BME-NTI-840\/2018<\/li>\n<li>Zsolnay \u00c9va, Czifrus Szabolcs, Kis D\u00e1niel P\u00e9ter, Horv\u00e1th Andr\u00e1s:PAKSI ATOMER\u0150M\u0170 2. SZ\u00c1M\u00da REAKTORBLOKK, REAKTORTART\u00c1LY FEL\u00dcGYELETI POZ\u00cdCI\u00d3, 4 \u00c9VEN\u00c1T (28.-31. SZ\u00c1M\u00da REAKTORKAMP\u00c1NY) BESUG\u00c1RZOTT NEUTRONMONITOROK (UHEP2 MINTAF\u0170Z\u00c9R) V\u00c1LASZ\u00c1NAK KI\u00c9RT\u00c9KEL\u00c9SE, BME-NTI-857\/A\/2018<\/li>\n<\/ol>\n","protected":false},"excerpt":{"rendered":"<p>Refer\u00e1lt foly\u00f3iratcikkek: K\u00e1lm\u00e1n, T. Keszthelyi, D. Kis: \u201eSolid state modified nuclear process\u201d EPJ Applied Physics (2008) K\u00e1lm\u00e1n, T. Keszthelyi, D. Kis: \u201eBoson induced nuclear fusion\u00a0in cristallyne solids\u201d EPJ Applied Physics [&hellip;]<\/p>\n","protected":false},"author":14,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-445","page","type-page","status-publish","hentry"],"_links":{"self":[{"href":"https:\/\/oktatok.reak.bme.hu\/kdp\/wp-json\/wp\/v2\/pages\/445","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/oktatok.reak.bme.hu\/kdp\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/oktatok.reak.bme.hu\/kdp\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/oktatok.reak.bme.hu\/kdp\/wp-json\/wp\/v2\/users\/14"}],"replies":[{"embeddable":true,"href":"https:\/\/oktatok.reak.bme.hu\/kdp\/wp-json\/wp\/v2\/comments?post=445"}],"version-history":[{"count":8,"href":"https:\/\/oktatok.reak.bme.hu\/kdp\/wp-json\/wp\/v2\/pages\/445\/revisions"}],"predecessor-version":[{"id":508,"href":"https:\/\/oktatok.reak.bme.hu\/kdp\/wp-json\/wp\/v2\/pages\/445\/revisions\/508"}],"wp:attachment":[{"href":"https:\/\/oktatok.reak.bme.hu\/kdp\/wp-json\/wp\/v2\/media?parent=445"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}