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Plasmonically-enhanced III-V nanowire lasers on silicon for integrated communications

Pubblicazioni

High-speed III-V nanowire photodetector monolithically integrated on Si

Autori: Svenja Mauthe, Yannick Baumgartner, Marilyne Sousa, Qian Ding, Marta D. Rossell, Andreas Schenk, Lukas Czornomaz, Kirsten E. Moselund
Pubblicato in: Nature Communications, Numero 11/1, 2020, ISSN 2041-1723
Editore: Nature Publishing Group
DOI: 10.1038/s41467-020-18374-z

Hybrid III–V Silicon Photonic Crystal Cavity Emitting at Telecom Wavelengths

Autori: Svenja Mauthe, Preksha Tiwari, Markus Scherrer, Daniele Caimi, Marilyne Sousa, Heinz Schmid, Kirsten E. Moselund, Noelia Vico Triviño
Pubblicato in: Nano Letters, Numero 12, 2020, ISSN 1530-6984
Editore: American Chemical Society
DOI: 10.1021/acs.nanolett.0c03634

Scaling of metal-clad InP nanodisk lasers: optical performance and thermal effects

Autori: Preksha Tiwari, Pengyan Wen, Daniele Caimi, Svenja Mauthe, Noelia Vico Triviño, Marilyne Sousa, Kirsten E. Moselund
Pubblicato in: Optics Express, Numero 29/3, 2021, Pagina/e 3915, ISSN 1094-4087
Editore: Optical Society of America
DOI: 10.1364/oe.412449

Single-Mode Emission in InP Microdisks on Si Using Au Antenna

Autori: Preksha Tiwari, Anna Fischer, Markus Scherrer, Daniele Caimi, Heinz Schmid, and Kirsten E. Moselund
Pubblicato in: ACS Photonics, Numero March 17, 2022, ISSN 2330-4022
Editore: American Chemical Society
DOI: 10.1021/acsphotonics.1c01677

In-Plane Monolithic Integration of Scaled III-V Photonic Devices

Autori: Markus Scherrer, Noelia Vico Triviño, Svenja Mauthe, Preksha Tiwari, Heinz Schmid, Kirsten E. Moselund
Pubblicato in: Applied Sciences, Numero 11/4, 2021, Pagina/e 1887, ISSN 2076-3417
Editore: MDPI
DOI: 10.3390/app11041887

Thermal Simulation and Experimental Analysis of Optically Pumped InP-on-Si Micro- and Nanocavity Lasers

Autori: Pengyan Wen, Preksha Tiwari, Markus Scherrer, Emanuel Lörtscher, Bernd Gotsmann, and Kirsten E. Moselund
Pubblicato in: ACS Photonics, Numero March 23, 2022, ISSN 2330-4022
Editore: American Chemical Society
DOI: 10.1021/acsphotonics.1c01951

Room-Temperature Lasing from Monolithically Integrated GaAs Microdisks on Silicon

Autori: Stephan Wirths, Benedikt F. Mayer, Heinz Schmid, Marilyne Sousa, Johannes Gooth, Heike Riel, Kirsten E. Moselund
Pubblicato in: ACS Nano, Numero 12/3, 2018, Pagina/e 2169-2175, ISSN 1936-0851
Editore: American Chemical Society
DOI: 10.1021/acsnano.7b07911

Concurrent Zinc-Blende and Wurtzite Film Formation by Selection of Confined Growth Planes

Autori: Philipp Staudinger, Svenja Mauthe, Kirsten E. Moselund, Heinz Schmid
Pubblicato in: Nano Letters, Numero 18/12, 2018, Pagina/e 7856-7862, ISSN 1530-6984
Editore: American Chemical Society
DOI: 10.1021/acs.nanolett.8b03632

Microcavity Lasers on Silicon by Template-Assisted Selective Epitaxy of Microsubstrates

Autori: Benedikt F. Mayer, Stephan Wirths, Svenja Mauthe, Philipp Staudinger, Marilyne Sousa, Joel Winiger, Heinz Schmid, Kirsten E. Moselund
Pubblicato in: IEEE Photonics Technology Letters, 2019, Pagina/e 1-1, ISSN 1041-1135
Editore: Institute of Electrical and Electronics Engineers
DOI: 10.1109/lpt.2019.2916459

InP-on-Si Optically Pumped Microdisk Lasers via Monolithic Growth and Wafer Bonding

Autori: Svenja Mauthe, Noelia Vico Trivino, Yannick Baumgartner, Marilyne Sousa, Daniele Caimi, Thilo Stoeferle, Heinz Schmid, Kirsten Moselund
Pubblicato in: IEEE Journal of Selected Topics in Quantum Electronics, 2019, Pagina/e 1-1, ISSN 1077-260X
Editore: Institute of Electrical and Electronics Engineers
DOI: 10.1109/jstqe.2019.2915924

Wurtzite InP Microdisks: from Epitaxy to Room-Temperature Lasing

Autori: Philipp Staudinger, Svenja Mauthe, Noelia Vico Triviño, Steffen Reidt, Kirsten Moselund, Heinz Schmid
Pubblicato in: Nanotechnology, Numero 24 September 2020, 2020, ISSN 0957-4484
Editore: Institute of Physics Publishing
DOI: 10.1088/1361-6528/abbb4e

Waveguide coupled III-V photodiodes monolithically integrated on Si

Autori: Wen, Pengyan; Tiwari, Preksha; Mauthe, Svenja; Schmid, Heinz; Sousa, Marilyne; Scherrer, Markus; Baumann, Michael; Bitachon, Bertold Ian; Leuthold, Juerg; Gotsmann, Bernd; Moselund, Kirsten E.
Pubblicato in: Nature Communications, Numero 3, 2022, Pagina/e 909, ISSN 2041-1723
Editore: Nature Publishing Group
DOI: 10.1038/s41467-022-28502-6

Single-Mode Emission in InP Microdisks on Si using Au Antenna

Autori: Preksha Tiwari, Anna Fischer, Markus Scherrer, Daniele Caimi, Heinz Schmid, Kirsten E. Moselund
Pubblicato in: 2021
Editore: arXiv:2110.11204

Monolithic Integration of III-V on Si Applied to Lasing Micro-Cavities: Insights from STEM and EDX

Autori: Marilyne Sousa; Svenja Mauthe; Benedikt Mayer; Stephan Wirths; Heinz Schmid; Kirsten E. Moselund
Pubblicato in: IEEE Nano, Track 3. Nanoelectronics: New Materials II, Numero 2, 2018
Editore: IEEE
DOI: 10.1109/nano.2018.8626223

Microcavity III-V lasers monolithically grown on silicon

Autori: Kirsten Moselund, Benedikt Mayer, Stephan Wirths, Svenja Mauthe, Yannick Baumgartner, Joel Winniger, Heinz Schmid, Marilyne Souza, Lukas Czornomaz, Philipp Staudinger
Pubblicato in: Quantum Sensing and Nano Electronics and Photonics XV, 2018, Pagina/e 48, ISBN 9781-510615663
Editore: SPIE
DOI: 10.1117/12.2291735

Monolithically integrated InGaAs microdisk lasers on silicon using template-assisted selective epitaxy

Autori: Svenja Mauthe, Benedikt Mayer, Marilyne Sousa, Gustavo Villares, Philipp Staudinger, Heinz Schmid, Kirsten Moselund
Pubblicato in: Nanophotonics VII, 2018, Pagina/e 103, ISBN 9781-510618718
Editore: SPIE
DOI: 10.1117/12.2306640

Monolithic integration of III-V nanostructures for electronic and photonic applications

Autori: Kirsten E. Moselund, Benedikt Mayer, Heinz Schmid, Heike Riel, Yannick Baumgartner, Stephan Wirths, Svenja Mauthe, Lukas Czornomaz, Marilyne Sousa Petit, Clarissa Convertino
Pubblicato in: Low-Dimensional Materials and Devices 2017, 2017, Pagina/e 19, ISBN 9781-510611566
Editore: SPIE
DOI: 10.1117/12.2275871

Monolithic Integration of III-V Photonic Devices on Silicon

Autori: Svenja Mauthe
Pubblicato in: 2020
Editore: ETHZ Research Collection
DOI: 10.3929/ethz-b-000443327

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