{"id":712,"date":"2023-12-28T17:20:07","date_gmt":"2023-12-28T17:20:07","guid":{"rendered":"https:\/\/web.infn.it\/TechTransfer\/?post_type=portfolio_page&#038;p=712"},"modified":"2024-07-11T13:41:04","modified_gmt":"2024-07-11T13:41:04","slug":"lace","status":"publish","type":"portfolio_page","link":"https:\/\/web.infn.it\/TechTransfer\/portfolio_page\/lace\/","title":{"rendered":"LACE"},"content":{"rendered":"<div class=\"wpb-content-wrapper\"><p>[vc_row css_animation=&#8221;&#8221; row_type=&#8221;row&#8221; use_row_as_full_screen_section=&#8221;no&#8221; type=&#8221;grid&#8221; angled_section=&#8221;no&#8221; text_align=&#8221;left&#8221; background_image_as_pattern=&#8221;without_pattern&#8221; z_index=&#8221;&#8221;][vc_column][vc_raw_html]JTVCd3BzZW9fYnJlYWRjcnVtYiU1RA==[\/vc_raw_html][vc_empty_space][vc_column_text]<\/p>\n<h1><span style=\"color: #20415c;\">LACE<br \/>\n<\/span><\/h1>\n<p>[\/vc_column_text][vc_empty_space][vc_row_inner row_type=&#8221;row&#8221; type=&#8221;full_width&#8221; text_align=&#8221;left&#8221; css_animation=&#8221;&#8221;][vc_column_inner width=&#8221;2\/3&#8243;][vc_column_text]<\/p>\n<h2>Laser Annealing Coaxial dEtectors<\/h2>\n<p>[\/vc_column_text][\/vc_column_inner][vc_column_inner width=&#8221;1\/3&#8243;][\/vc_column_inner][\/vc_row_inner][\/vc_column][\/vc_row][vc_row css_animation=&#8221;&#8221; row_type=&#8221;row&#8221; use_row_as_full_screen_section=&#8221;no&#8221; type=&#8221;grid&#8221; angled_section=&#8221;no&#8221; text_align=&#8221;left&#8221; background_image_as_pattern=&#8221;without_pattern&#8221; z_index=&#8221;&#8221;][vc_column width=&#8221;2\/3&#8243;][vc_empty_space][vc_column_text]Il progetto si propone di sviluppare un prototipo a livello pre-industriale di detector gamma coassiale e segmentabile di tipo-p al germanio iperpuro (HPGe), con giunzioni n+ sottili realizzate per Pulsed laser Melting.<\/p>\n<p>I detector gamma al germanio iperpuro sono gli strumenti di elezione per misurare e tracciare raggi gamma con la risoluzione migliore possibile. I detector attualmente utilizzati sono diodi con il bulk di tipo n e hanno il contatto esterno che raccoglie buche e la migliore risoluzione in energia si ottiene dal contatto nel core che integra il counting rate di tutti i segmenti. Perci\u00f2 i nuovi contatti esterni n sottili permetterebbero raggiungere il massimo counting rate per ogni segmento e la risoluzione degli stessi sarebbe meno soggetta al danneggiamento provocato in applicazioni con flusso neutronico.[\/vc_column_text][vc_empty_space][vc_single_image image=&#8221;2127&#8243; img_size=&#8221;full&#8221; qode_css_animation=&#8221;&#8221;][\/vc_column][vc_column width=&#8221;1\/4&#8243; css=&#8221;.vc_custom_1703772967700{margin-bottom: 50px !important;background-color: #042d4c !important;}&#8221; el_class=&#8221;column_details_portfolio&#8221;][vc_column_text]<\/p>\n<h4><span style=\"color: #ffffff;\">INFO<\/span><\/h4>\n<p>[\/vc_column_text][vc_empty_space][vc_column_text css=&#8221;.vc_custom_1703783924940{background-color: #042d4c !important;}&#8221;]<\/p>\n<h5 style=\"color: #4196b4;\"><strong>RESPONSABILE PROGETTO<\/strong><\/h5>\n<p style=\"color: #fff; font-weight: bold;\">Davide De Salvador<\/p>\n<p>[\/vc_column_text][vc_empty_space height=&#8221;21px&#8221;][vc_column_text css=&#8221;.vc_custom_1703783935055{background-color: #042d4c !important;}&#8221;]<\/p>\n<h5 style=\"color: #4196b4;\"><strong>ANNO<\/strong><\/h5>\n<p><strong><span style=\"color: #ffffff;\">2023<\/span><\/strong>[\/vc_column_text][vc_empty_space height=&#8221;21px&#8221;][vc_column_text css=&#8221;.vc_custom_1720705241477{background-color: #042d4c !important;}&#8221;]<\/p>\n<h5 style=\"color: #4196b4;\"><strong>STRUTTURE COINVOLTE<\/strong><\/h5>\n<p><span style=\"text-decoration: underline;\"><strong><a style=\"color: #ffffff; text-decoration: underline;\" href=\"https:\/\/www.lnl.infn.it\/\" target=\"_blank\" rel=\"noopener\">Laboratori Nazionali di Legnaro<\/a><\/strong><\/span>[\/vc_column_text][vc_empty_space height=&#8221;21px&#8221;][vc_column_text css=&#8221;.vc_custom_1714313761424{background-color: #042d4c !important;}&#8221;]<\/p>\n<h5 style=\"color: #4196b4;\"><strong>SETTORI TECNOLOGICI<\/strong><\/h5>\n<p><strong><span style=\"color: #ffffff;\">Rivelatori<\/span><\/strong>[\/vc_column_text][vc_empty_space height=&#8221;21px&#8221;][vc_column_text css=&#8221;.vc_custom_1712606639367{background-color: #042d4c !important;}&#8221;]<\/p>\n<h5 style=\"color: #4196b4;\"><strong>TECNOLOGIE COLLEGATE<\/strong><\/h5>\n<p><strong><span style=\"color: #ffffff;\"> P_20.006 <\/span><\/strong>[\/vc_column_text][vc_empty_space height=&#8221;21px&#8221;][vc_row_inner row_type=&#8221;row&#8221; type=&#8221;full_width&#8221; text_align=&#8221;left&#8221; css_animation=&#8221;&#8221;][vc_column_inner el_class=&#8221;riga_spazio_progetti&#8221;][\/vc_column_inner][\/vc_row_inner][vc_empty_space height=&#8221;21px&#8221;][vc_column_text css=&#8221;.vc_custom_1720705259112{background-color: #042d4c !important;}&#8221;]<\/p>\n<h5 style=\"color: #4196b4;\"><strong>CONTATTI<\/strong><\/h5>\n<p><span style=\"color: #ffffff;\">Per maggiori informazioni sul progetto, <\/span><a href=\"mailto:tto@lists.infn.it\"><span style=\"text-decoration: underline;\"><strong><span style=\"color: #ffffff; text-decoration: underline;\">SCRIVICI<\/span><\/strong><\/span><\/a>[\/vc_column_text][vc_empty_space height=&#8221;21px&#8221;][\/vc_column][\/vc_row][vc_row css_animation=&#8221;&#8221; row_type=&#8221;row&#8221; use_row_as_full_screen_section=&#8221;no&#8221; type=&#8221;grid&#8221; angled_section=&#8221;no&#8221; text_align=&#8221;left&#8221; background_image_as_pattern=&#8221;without_pattern&#8221; z_index=&#8221;&#8221;][vc_column width=&#8221;2\/3&#8243;][vc_empty_space][vc_column_text]La possibilit\u00e0 di produrne di tipo p con la raccolta di elettroni nel contatto esterno passa attraverso lo sviluppo di una tecnologia che permetta di generare giunzioni \u00a0n+ sottili segmentabili e stabili al riscaldamento. La tecnologia PLM permette di creare giunzioni sottili n+ che non contaminano il Ge iperpuro e sono stabili a seguito di trattamenti termici di annealing. Altri metodi quali l\u2019impiantazione ionica, la diffusione di litio, o il deposito di strati amorfi non soddisfano tutti i requisiti necessari a tale produzione producendo strati o scarsamente drogati o troppo spessi e non segmentabili o non stabili ai trattamenti termici per la rimozione del danno.<\/p>\n<p>La tecnologia \u00e8 anche adatta alla produzione di altri detector anche planari finemente segmentati che potrebbero portare ad ulteriori settori di mercato nell\u2019ambito del gamma imaging in applicazioni medicali e aereospaziali.[\/vc_column_text][vc_empty_space][\/vc_column][\/vc_row][vc_row css_animation=&#8221;&#8221; row_type=&#8221;row&#8221; use_row_as_full_screen_section=&#8221;no&#8221; type=&#8221;full_width&#8221; angled_section=&#8221;no&#8221; text_align=&#8221;left&#8221; background_image_as_pattern=&#8221;without_pattern&#8221;][vc_column][vc_empty_space height=&#8221;51px&#8221;][\/vc_column][\/vc_row]<\/p>\n<\/div>","protected":false},"excerpt":{"rendered":"<p>[vc_row css_animation=&#8221;&#8221; 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