Institut für Festkörperelektronik

Organization Name (de) Name der Organisation (de)
E362 - Institut für Festkörperelektronik
 
Code Kennzahl
E362
 
Type of Organization Organisationstyp
Institute
Parent OrgUnit Übergeordnete Organisation
 
Active Aktiv
 


Results 321-340 of 3297 (Search time: 0.005 seconds).

PreviewAuthor(s)TitleTypeIssue Date
321Simon, Maik ; Mizuta, Ryo ; Fan, Ye ; Tahn, Alexander ; Pohl, Darius ; Trommer, Jens ; Hofmann, Stephan ; Mikolajick, Thomas ; Weber, Walter M. Lateral Extensions to Nanowires for Controlling Nickel Silicidation Kinetics: Improving Contact Uniformity of Nanoelectronic DevicesArtikel Article 2021
322Opačak, Nikola ; Cin, Sandro Dal ; Hillbrand, Johannes ; Schwarz, Benedikt Frequency Comb Generation by Bloch Gain Induced Giant Kerr NonlinearityArtikel Article 2021
323Behrle Raphael - 2021 - Ge-based reconfigurable transistors a platform enabling...pdf.jpgBöckle, Raphael Ge-based reconfigurable transistors: a platform enabling negative differential resistanceThesis Hochschulschrift 2021
324Song, Zehao ; Sistani, Masiar ; Wind, Lukas ; Pohl, Darius ; Rellinghaus, Bernd ; Weber, Walter M ; Lugstein, Alois Plasmon-assisted polarization-sensitive photodetection with tunable polarity for integrated silicon photonic communication systemsArtikel Article 2021
325Delaforce, Jovian ; Sistani, Masiar ; Kramer, Roman B. G. ; Luong, Minh A. ; Roch, Nicolas ; Weber, Walter M. ; den Hertog, Martien I. ; Robin, Eric ; Naud, Cecile ; Lugstein, Alois ; Buisson, Olivier Al-Ge-Al Nanowire Heterostructure: From Single-Hole Quantum Dot to Josephson EffectArtikel Article 2021
326Sistani, Masiar ; Böckle, Raphael ; Falkensteiner, David ; Luong, Minh Anh ; den Hertog, Martien I. ; Lugstein, Alois ; Weber, Walter M. Nanometer-Scale Ge Based Adaptable Transistors Providing Programmable Negative Differential Resistance Enabling Multi Valued LogicArtikel Article 2021
327Koller, C. ; Lymperakis, L. ; Pogany, D. ; Pobegen, G. ; Ostermaier, C. Mechanism leading to semi-insulating property of carbon-doped GaN: Analysis of donor acceptor ratio and method for its determinationArtikel Article 2021
328Winter, Dominik ; Limbacher, Benedikt ; Jaidl, Michael ; Ertl, Marie Christine ; Brandstetter, Martin ; MacFarland, Donald ; Zederbauer, Tobias ; Andrews, Aaron Maxwell ; Schrenk, Werner ; Strasser, Gottfried ; Darmo, Juraj ; Unterrainer, Karl Investigation of Near-Infrared Induced Spatial THz Modulation in High Resistivity SiliconKonferenzbeitrag Inproceedings2021
329Sistani, Masiar ; Böckle, Raphael ; Bartmann, Maximilian G. ; Lugstein, Alois ; Weber, Walter M. Bias-Switchable Photoconductance in a Nanoscale Ge Photodetector Operated in the Negative Differential Resistance RegimeArtikel Article 2021
330David, M. ; Dabrowska, A. ; Sistani, M. ; Doganlar, I. C. ; Hinkelmann, E. ; Detz, H. ; Weber, W. M. ; Lendl, B. ; Strasser, G. ; Hinkov, B. Octave-spanning low-loss mid-IR waveguides based on semiconductor-loaded plasmonicsArtikel Article 2021
331Delaforce, J. ; Sistani, Masiar ; Kramer, Roman ; Hertog, Martien ; Roch, N. ; Naud, Cécile ; Lugstein, Alois ; Buisson, Olivier Superconducting Proximity Effect in Ultra-Scaled Pure Ge Quantum DotsKonferenzbeitrag Inproceedings2021
332Sistani, Masiar ; Böckle, Raphael ; Wind, Lukas ; Eysin, Kilian ; Maeder, Xavier ; Schweizer, Peter ; Michler, Johann ; Lugstein, Alois ; Weber, Walter M. Polycrystalline Ge Nanosheets Embedded in Metal‐Semiconductor Heterostructures Enabling Wafer‐Scale 3D Integration of Ge Nanodevices with Self‐Aligned Al ContactsArtikel Article 2021
333Wind, Lukas ; Sistani, Masiar ; Song, Zehao ; Maeder, Xavier ; Pohl, Darius ; Michler, Johann ; Rellinghaus, Bernd ; Weber, Walter M. ; Lugstein, Alois Monolithic Metal−Semiconductor−Metal Heterostructures Enabling Next-Generation Germanium NanodevicesArtikel Article 2021
334Kumar, V. ; Karaca, Hasan ; Holland, Steffen ; Ritter, Hans-Martin ; Pogany, Dionyz Influencing SCR Holding Current by Segmentation TopologyPräsentation Presentation2021
335Schwarz, Benedikt ; Opacak, Nikola ; Dal Cin, Sandro ; Hillbrand, Johannes Frequency combs enabled by Bloch gain in quantum cascade lasersKonferenzbeitrag Inproceedings2021
336Frank, Felix ; Baumgartner, Bettina ; David, Mauro ; Doganlar, Cem Ismael ; Strasser, Gottfried ; Hinkov, Borislav ; Ramer, Georg ; Lendl, Bernhard Development of a micromolar sensitivity dipstick mid-IR ATR sensor for phosphate in waterPräsentation Presentation2021
337Dabrowska, Alicja ; David, Mauro ; Schwaighofer, Andreas ; Freitag, Stephan ; Andrews, Aaron Maxwell ; Strasser, Gottfried ; Hinkov, Borislav ; Lendl, Bernhard Broadband Mid-Infrared Sensor employing a Quantum Cascade Laser and a Quantum Cascade Detector for Milk Protein AnalysisPräsentation Presentation2021
338Dabrowska, Alicja ; David, Mauro ; Schwaighofer, Andreas ; Freitag, Stephan ; Andrews, Aaron Maxwell ; Strasser, Gottfried ; Hinkov, Borislav ; Lendl, Bernhard Broadband Mid-Infrared Spectroscopy employing a Quantum Cascade Laser and a Quantum Cascade Detector for Milk Protein AnalysisPräsentation Presentation2021
339Böckle, R ; Sistani, Masiar ; Weber, Walter M. Ge-based Reconfigurable Transistors: A Platform Enabling Negative Differential ResistancePräsentation Presentation2021
340Schwarz, Benedikt Integrated mid-infrared frequency comb sourcesPräsentation Presentation2021