We investigated optical nonlinearity induced by electron tunneling through an insulating vertical gap between metals, both at terahertz frequency and at near-infrared frequency. We adopted graphene and alumina layers as gap materials to form gap widths of 3 angstrom and 1.5 nm, respectively. Transmission measurements show that tunneling-induced transmittance changes from strong fields at the gaps can be observed with relatively weak incident fields at terahertz frequency due to high field enhancement, whereas nonlinearity at the near-infrared frequency is restricted by laser-induced metal damages. Even when the same level of tunneling currents occurs at both frequencies, transmittance in the terahertz regime decreases much faster than that ...
We theoretically calculate the nonlinear terahertz waves mixing effect in doped graphene with a fini...
Second-order optical nonlinearities can be greatly enhanced by orders of magnitude in resonantly exc...
We report nonlinear terahertz (THz) effects in monolayer graphene, giving rise to transmission enhan...
Quantum tunnelling becomes inevitable as gap dimensions in metal structures approach the atomic leng...
Quantum tunneling in plasmonic nanostructures has presented an interesting aspect of incorporating q...
Graphene has long been predicted to show exceptional nonlinear optical properties, especially in the...
Nonlinear interaction between strong-field terahertz electromagnetic waves and matters will become o...
Quantum tunneling in plasmonic nanostructures has presented an interesting aspect of incorporating q...
We show that the transmission of a terahertz (THz) pulse through single-layer graphene is strongly n...
Understanding light interaction with metallic structures provides opportunities of manipulation of l...
Resulting from the availability of improved sources, research in the terahertz (THz) spectral range ...
Subwavelength graphene structures support localized plasmonic resonances in the terahertz and mid-in...
We provide the first observation that hybridizing graphene with plasmonic metamaterial results in or...
Understanding light interaction with metallic structures provides opportunities of manipulation of l...
Graduation date: 2015Access restricted to the OSU Community, at author's request, from Sept. 30, 201...
We theoretically calculate the nonlinear terahertz waves mixing effect in doped graphene with a fini...
Second-order optical nonlinearities can be greatly enhanced by orders of magnitude in resonantly exc...
We report nonlinear terahertz (THz) effects in monolayer graphene, giving rise to transmission enhan...
Quantum tunnelling becomes inevitable as gap dimensions in metal structures approach the atomic leng...
Quantum tunneling in plasmonic nanostructures has presented an interesting aspect of incorporating q...
Graphene has long been predicted to show exceptional nonlinear optical properties, especially in the...
Nonlinear interaction between strong-field terahertz electromagnetic waves and matters will become o...
Quantum tunneling in plasmonic nanostructures has presented an interesting aspect of incorporating q...
We show that the transmission of a terahertz (THz) pulse through single-layer graphene is strongly n...
Understanding light interaction with metallic structures provides opportunities of manipulation of l...
Resulting from the availability of improved sources, research in the terahertz (THz) spectral range ...
Subwavelength graphene structures support localized plasmonic resonances in the terahertz and mid-in...
We provide the first observation that hybridizing graphene with plasmonic metamaterial results in or...
Understanding light interaction with metallic structures provides opportunities of manipulation of l...
Graduation date: 2015Access restricted to the OSU Community, at author's request, from Sept. 30, 201...
We theoretically calculate the nonlinear terahertz waves mixing effect in doped graphene with a fini...
Second-order optical nonlinearities can be greatly enhanced by orders of magnitude in resonantly exc...
We report nonlinear terahertz (THz) effects in monolayer graphene, giving rise to transmission enhan...