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List of works by Benedikt Baeuerle

108 Gbit/s Plasmonic Mach–Zehnder Modulator with > 70-GHz Electrical Bandwidth

All-plasmonic Mach–Zehnder modulator enabling optical high-speed communication at the microscale

article by Christian Haffner et al published 27 July 2015 in Nature Photonics

Broadband Plasmonic Modulator Enabling Single Carrier Operation Beyond 100 Gbit/s

Constellation modulation - an approach to increase spectral efficiency.

scientific article published in July 2017

Full flex-grid asynchronous multiplexing demonstrated with Nyquist pulse-shaping

scientific article published on May 2014

High speed plasmonic modulator array enabling dense optical interconnect solutions

scientific article published on 01 November 2015

High-speed plasmonic Mach-Zehnder modulator in a waveguide

High-speed plasmonic modulator in a single metal layer.

scientific article published in November 2017

Large Pockels effect in micro- and nanostructured barium titanate integrated on silicon

scientific article published on 12 November 2018

Multi-format carrier recovery for coherent real-time reception with processing in polar coordinates

scientific article

Optical Interconnect Solution With Plasmonic Modulator and Ge Photodetector Array

Plasmonic IQ modulators with attojoule per bit electrical energy consumption

scientific article published on 12 April 2019

Plasmonic Organic Hybrid Modulators—Scaling Highest Speed Photonics to the Microscale

Plasmonic modulator with >170 GHz bandwidth demonstrated at 100 GBd NRZ

scientific article published on 01 February 2017

Plasmonic phased array feeder enabling ultra-fast beam steering at millimeter waves.

scientific article published in October 2016

Pre-equalization technique enabling 70 Gbit/s photonic-wireless link at 60 GHz

scientific article published on 01 December 2016

Real-time Nyquist pulse generation beyond 100 Gbit/s and its relation to OFDM.

scientific article published in January 2012

Ultra-compact plasmonic IQ-modulator

Wired and wireless high-speed communications enabled by plasmonics