Zobrazeno 1 - 10
of 46
pro vyhledávání: '"Scott R, Hammond"'
Autor:
Larry R. Dalton, Juerg Leuthold, Bruce H. Robinson, Christian Haffner, Delwin L. Elder, Lewis E. Johnson, Scott R. Hammond, Wolfgang Heni, Claudia Hosessbacher, Benedikt Baeuerle, Eva De Leo, Ueli Koch, Patrick Habegger, Yuriy Fedoryshyn, David Moor, Ping Ma
Publikováno v:
APL Materials, Vol 11, Iss 5, Pp 050901-050901-21 (2023)
The growth of integrated photonics has driven the need for efficient, high-bandwidth electrical-to-optical (EO) signal conversion over a broad range of frequencies (MHz–THz), together with efficient, high bandwidth photodetection. Efficient signal
Externí odkaz:
https://doaj.org/article/a45e4070eef64acbad03f55e6d1a3ac1
Publikováno v:
Organic Photonic Materials and Devices XXV.
Autor:
Eva De Leo, Koen Clays, Marcel Destraz, Lewis E. Johnson, Norbert Meier, Huajun Xu, Wolfgang Heni, Delwin L. Elder, Bruce H. Robinson, Yovan de Coene, Wouter Vander Ghinst, Larry R. Dalton, Juerg Leuthold, Scott R. Hammond
Publikováno v:
Materials Horizons, 9 (1)
This study demonstrates enhancement of in-device electro-optic activity via a series of theory-inspired organic electro-optic (OEO) chromophores based on strong (diarylamino)phenyl electron donating moieties. These chromophores are tuned to minimize
Autor:
Lewis E. Johnson, Scott R. Hammond, Delwin L. Elder, Kevin M. O'Malley, Huajun Xu, Larry R. Dalton, Bruce H. Robinson
Publikováno v:
Nanoengineering: Fabrication, Properties, Optics, Thin Films, and Devices XIX.
Autor:
Yovan de Coene, Larry R. Dalton, Scott R. Hammond, Koen Clays, Huajun Xu, Bruce H. Robinson, Delwin L. Elder, Lewis E. Johnson
Publikováno v:
Journal of Materials Chemistry C. 9:2721-2728
Organic electro-optic (EO) materials incorporated into silicon-organic hybrid and plasmonic-organic hybrid devices have enabled new records in EO modulation performance. We report a new series of nonlinear optical chromophores engineered by theory-gu
Autor:
Yannik Horst, Tobias Blatter, Laurenz Kulmer, Bertold Ian Bitachon, Benedikt Baeuerle, Marcel Destraz, Wolfgang Heni, Stefan Koepfli, Patrick Habegger, Marco Eppenberger, Eva De Leo, Claudia Hoessbacher, Delwin L. Elder, Scott R. Hammond, Lewis E. Johnson, Larry R. Dalton, Yuriy Fedoryshyn, Yannick Salamin, Maurizio Burla, Juerg Leuthold
Publikováno v:
Journal of Lightwave Technology, 40 (6)
A transparent Optical-subTHz-Optical link providing record-high single line rates of 240 Gbit/s and 192 Gbit/s on a single optical carrier over distances from 5 to 115 m is demonstrated. Besides a direct mapping of the optical to a 230 GHz subTHz-car
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::d333a9047d7ab026f82e03f378924224
https://hdl.handle.net/20.500.11850/539198
https://hdl.handle.net/20.500.11850/539198
Publikováno v:
Organic Photonic Materials and Devices XXIV.
Autor:
Lewis E. Johnson, Bruce H. Robinson, Stephanie J. Benight, Delwin L. Elder, Scott R. Hammond, Andreas F. Tillack, Wolfgang Heni, Larry R. Dalton
Publikováno v:
Physical Chemistry of Semiconductor Materials and Interfaces XX.
Hybrid organic electro-optic (OEO) devices consist of a layer of ordered organic chromophores confined between layers of metals or semiconductors, enabling optical fields to be tightly confined within the OEO material. The combination of tight confin
Autor:
Kevin O'Malley, Larry R. Dalton, Bruce H. Robinson, Delwin L. Elder, Scott R. Hammond, Stephanie J. Benight, Huajun Xu, Lewis E. Johnson
Publikováno v:
Molecular and Nano Machines IV.
We review recent transformative advances in materials design, synthesis, and processing as well as device engineering for the utilization of organic materials in hybrid electro-optic (EO) and optical rectification (OR) technologies relevant to teleco
Autor:
Huajun, Xu, Delwin L, Elder, Lewis E, Johnson, Yovan, de Coene, Scott R, Hammond, Wouter, Vander Ghinst, Koen, Clays, Larry R, Dalton, Bruce H, Robinson
Publikováno v:
Advanced materials (Deerfield Beach, Fla.). 33(45)
High performance organic electro-optic (OEO) materials enable ultrahigh bandwidth, small footprint, and extremely low drive voltage in silicon-organic hybrid and plasmonic-organic hybrid photonic devices. However, practical OEO materials under device