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Non-polaritonic effects in cavity-modified photochemistry
Philip A. Thomas, Wai Jue Tan, Vasyl G. Kravets +2
Strong coupling of molecules to vacuum fields has been widely reported to lead to modified chemical properties such as reaction rates. However, some recent attempts to reproduce in…
Strained bubbles in van der Waals heterostructures as local emitters of photoluminescence with adjustable wavelength
Anastasia Tyurnina, Denis Bandurin, Ekaterina Khestanova +6
The possibility to tailor photoluminescence (PL) of monolayer transition metal dichalcogenides (TMDCs) using external factors such as strain, doping and external environment is of…
Nonlinear light mixing by graphene plasmons
D. Kundys, B. Van Duppen, O. P. Marshall +5
Graphene is known to possess strong optical nonlinearity. Its nonlinear response can be further enhanced by graphene plasmons. Here, we report a novel nonlinear electro-absorption…
Gain Modulation by Graphene Plasmons in Aperiodic Lattice Lasers
S. Chakraborty, O. P. Marshall, T. G. Folland +3
Two-dimensional graphene plasmon-based technologies will enable the development of fast, compact and inexpensive active photonic elements because, unlike plasmons in other material…
Graphene plasmonics
A. N. Grigorenko, Marco Polini, K. S. Novoselov
Two rich and vibrant fields of investigation, graphene physics and plasmonics, strongly overlap. Not only does graphene possess intrinsic plasmons that are tunable and adjustable,…
Universal Dynamic Conductivity and Quantized Visible Opacity of Suspended Graphene
R. R. Nair, P. Blake, A. N. Grigorenko +5
We show that the optical transparency of suspended graphene is defined by the fine structure constant, alpha, the parameter that describes coupling between light and relativistic e…