Area of research
Atomic and Molecular Physics, and Optics · Materials Chemistry
Research interest
Research interests include Advanced Chemical Physics Studies, Graphene research and applications, Spectroscopy and Quantum Chemical Studies, and Quantum and electron transport phenomena.
Observation of Floquet–Bloch states in monolayer graphene
Polaritonic quantum matter
Pushing lightwave-driven scanning tunneling microscopy to its high frequency limit
Terahertz field-induced metastable magnetization near criticality in FePS3
Two-dimensional heavy fermions in the van der Waals metal CeSiI
Negative refraction in hyperbolic hetero-bicrystals
Chirality selective magnon-phonon hybridization and magnon-induced chiral phonons in a layered zigzag antiferromagnet
The spontaneous symmetry breaking in Ta <sub>2</sub> NiSe <sub>5</sub> is structural in nature
Quadrupolar–dipolar excitonic transition in a tunnel-coupled van der Waals heterotrilayer
Phonon-enhanced nonlinearities in hexagonal boron nitride
Weakened Topological Protection of the Quantum Hall Effect in a Cavity
Link between interlayer hybridization and ultrafast charge transfer in WS<sub>2</sub>-graphene heterostructures
Unconventional excitonic states with phonon sidebands in layered silicon diphosphide
Quantitative sampling of atomic-scale half-cycle terahertz waveforms
Quantitative Sampling of Atom-Scale Terahertz Waveforms
Emerging COVID-19 impacts, responses, and lessons for building resilience in the seafood system
Survival of Floquet–Bloch States in the Presence of Scattering
Programmable hyperbolic polaritons in van der Waals semiconductors
Coherent strong-coupling of terahertz magnons and phonons in a Van der Waals antiferromagnetic insulator
Quantitative Waveform Sampling on Atomic Scales
Charge-Transfer Plasmon Polaritons at Graphene/α-RuCl<sub>3</sub> Interfaces
Quantitative sampling of atomic-scale electromagnetic waveforms
Dual boson diagrammatic Monte Carlo approach applied to the extended Hubbard model
Polycyclic aromatic chains on metals and insulating layers by repetitive [3+2] cycloadditions
From a quantum-electrodynamical light–matter description to novel spectroscopies
High-harmonic generation from few-layer hexagonal boron nitride: Evolution from monolayer to bulk response
Atoms and molecules in cavities, from weak to strong coupling in quantum-electrodynamics (QED) chemistry
Impact of the Electronic Band Structure in High-Harmonic Generation Spectra of Solids
Strongly bound excitons in anatase TiO2 single crystals and nanoparticles
RePEc: Research Papers in Economics 2017cited by 183position: middle
Emergent elemental two-dimensional materials beyond graphene