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From the 9 of 503 linked papers with an AI index.

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20242026
most citedTopological Valley Transport in Bilayer Graphene Induced by Interlayer Sliding

12 citations · 51 across the 156 of their papers we have counts for

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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.optics2025

Tailoring hBN's Phonon Polaritons with the Plasmonic Phase-Change Material In3SbTe2

Lina Jäckering, Aaron Moos, Lukas Conrads +8

Polaritons in van-der-Waals materials (vdWM) promise high confinement and multiple tailoring options by optical structures, e.g., resonators, launching structures and lenses. These…

physics.optics2025

Valley optoelectronics based on meta-waveguide photodetectors

Chi Li, Kaijian Xing, Wenhao Zhai +10

In transition metal dichalcogenides, the valley degree of freedom directly couples valley-polarised excitons - excited by circularly polarised light - to valley-dependent chiral ph…

physics.optics2025

Quantum interference and occupation control in high harmonic generation from monolayer

Minjeong Kim, Taeho Kim, Anna Galler +13

Two-dimensional hexagonal materials such as transition metal dichalcogenides exhibit valley degrees of freedom, offering fascinating potential for valley-based quantum computing an…

physics.optics2025

Electrical Generation of Colour Centres in Hexagonal Boron Nitride

Ivan Zhigulin, Gyuna Park, Karin Yamamura +5

Defects in wide band gap crystals have emerged as a promising platform for hosting colour centres that enable quantum photonic applications. Among these, hexagonal boron nitride (h…

physics.optics2024

Super-resolution imaging of nanoscale inhomogeneities in hBN-covered and encapsulated few-layer graphene

Lina Jäckering, Konstantin G. Wirth, Lukas Conrads +9

Encapsulating few-layer graphene (FLG) in hexagonal boron nitride (hBN) can cause nanoscale inhomogeneities in the FLG, including changes in stacking domains and topographic defect…