activity
20242026
most citedC-band 160 Gbs-1 Zero-bias Graphene Photodetectors: Breaking the Responsivity-Bandwidth Trade-off by Heterostructure Engineering

1 citations · 1 across the 1 of their papers we have counts for

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5 papers

physics.optics20261 cited

C-band 160 Gbs-1 Zero-bias Graphene Photodetectors: Breaking the Responsivity-Bandwidth Trade-off by Heterostructure Engineering

Karuppasamy Pandian Soundarapandian, Alberto Montanaro, Ioannis Vangelidis +17

Graphene photodetectors offer ultrafast response and broadband operation, but their responsivity is typically limited by rapid hot-carrier cooling, leading to a trade-off between s…

cond-mat.mes-hall2026

Enhanced Terahertz Photoresponse via Acoustic Plasmon Cavity Resonances in Scalable Graphene

Domenico De Fazio, Sebastián Castilla, Karuppasamy P. Soundarapandian +11

Precise control and nanoscale confinement of terahertz (THz) fields are essential requirements for emerging applications in photonics, quantum technologies, wireless communications…

physics.optics2025

Graphene-enabled coherent (sub-)terahertz wave detection and thickness determination

Ronny de la Bastida, Enzo Rongione, Karuppasamy Pandian Soundarapandian +10

Phase-sensitive terahertz (THz) detection enables applications ranging from astronomy to non-destructive testing. However, current THz detectors lack phase sensitivity, unless they…

physics.optics2024

High-Speed Graphene-based Sub-Terahertz Receivers enabling Wireless Communications for 6G and Beyond

Karuppasamy Pandian Soundarapandian, Sebastián Castilla, Stefan M. Koepfli +12

In recent years, the telecommunications field has experienced an unparalleled proliferation of wireless data traffic. Innovative solutions are imperative to circumvent the inherent…

physics.optics2024

Electrical Spectroscopy of Polaritonic Nanoresonators

Sebastián Castilla, Hitesh Agarwal, Ioannis Vangelidis +13

One of the most captivating properties of polaritons is their capacity to confine light at the nanoscale. This confinement is even more extreme in two-dimensional (2D) materials. 2…