Zobrazeno 1 - 9
of 9
pro vyhledávání: '"Aurelio Borzi"'
Autor:
Zoltán Balogh-Michels, Igor Stevanovic, Aurelio Borzi, Andreas Bächli, Daniel Schachtler, Thomas Gischkat, Antonia Neels, Alexander Stuck, Roelene Botha
Publikováno v:
Journal of the European Optical Society-Rapid Publications, Vol 17, Iss 1, Pp 1-8 (2021)
Abstract In this work, we present our results about the thermal crystallization of ion beam sputtered hafnia on 0001 SiO2 substrates and its effect on the laser-induced damage threshold (LIDT). The crystallization process was studied using in-situ X-
Externí odkaz:
https://doaj.org/article/02ea5624a8864dc0a3dde27b334efdb2
Autor:
Jannatun Nawer, Brian Stanford, Matthias Kolbe, Stephan Schneider, Stéphane Gossé, Rainer K. Wunderlich, Markus Mohr, Aurelio Borzì, Antonia Neels, Douglas M. Matson
Publikováno v:
npj Microgravity, Vol 10, Iss 1, Pp 1-6 (2024)
Abstract Evaporation control is a critical facility resource during solidification experiments that limits processing time and must be tracked to ensure facility health. A thermodynamic analysis was performed on a ternary FeCrNi sample processed onbo
Externí odkaz:
https://doaj.org/article/44f66b8e2f944dd5a338194bc1e65d1b
Autor:
Irene Ferretto, Aurelio Borzi, Dohyung Kim, Nicolò Maria della Ventura, Ehsan Hosseini, Wookjin Lee, Christian Leinenbach
Publikováno v:
SSRN Electronic Journal.
Autor:
Antonia Neels, Aurelio Borzi, Igor Stevanovic, Thomas Gischkat, Alexander Stuck, Zoltán Balogh-Michels, Roelene Botha, Andreas Bächli, Daniel Schachtler
Publikováno v:
Journal of the European Optical Society-Rapid Publications, Vol 17, Iss 1, Pp 1-8 (2021)
In this work, we present our results about the thermal crystallization of ion beam sputtered hafnia on 0001 SiO2substrates and its effect on the laser-induced damage threshold (LIDT). The crystallization process was studied using in-situ X-ray diffra
Autor:
Oguz Yildirim, Dominik Jaeger, Hans J. Hug, Hartmut Rohrmann, Aurelio Borzi, Antonia Neels, Daniel W. Schneider, Claudiu V. Falub, Marco Rechsteiner, Miguel A. Marioni
Publikováno v:
SSRN Electronic Journal.
High-quality epitaxial Pt _lms are usually grown by molecular beam evaporation (MBE) techniques, where the deposited atoms reach the substrate with typical thermal energies. To obtain a good epitaxial growth, the substrate is kept at elevated tempera
Autor:
Aurelio Borzi, Alexandre Reinhardt, Catherine Maeder-Pachurka, Selsabil Sejil, Gregory Enyedi, Denis Mercier, Pierre Perreau, Pauline Sylvia Pokam Kuisseu, Jerome Dechamp, Michael Bertucchi, Gael Castellan, Marc Zussy, Frédéric Mazen, Christophe Billard, Julien Delprato, Marie Bousquet
Publikováno v:
2019 IEEE International Ultrasonics Symposium (IUS).
In this paper, Y+163°-cut LiNbO 3 (LNO) Film Bulk Acoustic Resonators (FBAR) with patterned bottom electrodes (AlSi or W) and a sacrificial layer cavity have been fabricated using a layer transfer process (4-inch). Unlike previous work based on film
Autor:
Aurelio Borzi, Daniel W. Schneider, Oguz Yildirim, Claudiu V. Falub, Antonia Neels, Marco Rechsteiner, Hartmut Rohrmann, Hans J. Hug, Miguel A. Marioni, Dominik Jaeger
Publikováno v:
Scripta Materialia. 194:113689
High-quality epitaxial Pt films are usually grown by molecular beam evaporation (MBE) techniques, where the deposited atoms reach the substrate with typical thermal energies. To obtain a good epitaxial growth, the substrate is kept at elevated temper
Autor:
Simone Dolabella, Alexandre Reinhardt, Ausrine Bartasyte, Samuel Margueron, Amit Sharma, Xavier Maeder, Alex Dommann, Antonia Neels, Aurelio Borzì
Publikováno v:
Materials & Design, Vol 231, Iss , Pp 112001- (2023)
LiNbO3 (LNO) is a material suitable for high-frequency and wideband RF filters as well as photonic applications due to its outstanding piezoelectric and optical properties. Applications such as thin-film bulk acoustic wave resonators or highly confin
Externí odkaz:
https://doaj.org/article/0b69fa09de2e4e66a3cfab828c0b02ff
Autor:
Francesca Lo Presti, Aurelio Borzì, Anna Lucia Pellegrino, Patrizia Rossi, Paola Paoli, Graziella Malandrino
Publikováno v:
Results in Chemistry, Vol 4, Iss , Pp 100640- (2022)
Metal-Organic Frameworks (MOFs) are extended three-dimensional metal–organic clusters created by the self-assembly of metal ions with organic ligands, whose repeated unit spreads in space very orderly. Yttrium based 3D network structure, have been
Externí odkaz:
https://doaj.org/article/f9d2758ab4294ef8bf91adf9070e4776