We experimentally demonstrate surface plasmon resonance (SPR) in the terahertz range in InSb and InAs. The surface plasmon is excited on the interface between a thin polymer film and the semiconductor using a silicon prism in Otto configuration. The low effective mass of InSb and InAs permits tuning of the SPR by an external magnetic field in the transversal configuration. The data show a good agreement with a model. Strong excitation of the surface plasmon is present in both materials, with a shifting of resonance position by more than 100 GHz for the field of 0.25 T, to both higher and lower energies with opposite orientation of the magnetic field. Applicability of the terahertz SPR sensor is discussed, along with modeled design for the K...
We present a computational study of terahertz optical properties of a grating-coupled plasmonic stru...
Nanoscale magnetic systems play a decisive role in areas ranging from biology to spintronics. Althou...
6 págs.; 6 figs. ; PACS number s : 73.20.Mf, 42.79.Dj, 42.25.Bs, 78.68. mUsing terahertz time-domain...
Copyright © 2008 American Institute of Physics. This article may be downloaded for personal use only...
We report terahertz surface plasmon resonance (SPR) sensing based on prism-coupling to the spoof sur...
The terahertz regime has until recently been some what neglected due to the difficulty of generating...
Surface plasmon resonance (SPR) occurs at the interface of a semiconductor and a dielectric when cer...
We investigated the spoof surface plasmon polaritons (SSPPs) on 1D grooved metal surface for teraher...
Surface plasmon waves are transverse magnetic electromagnetic waves propagating along a dielectric-m...
We present in this chapter an introduction to the field of terahertz (THz) plasmonics. The character...
The spoof surface plasmon polaritons (SSPPs) structure can be used as a sensor in THz region for the...
The surface plasmon resonance (SPR) between metal and dielectric material has a good enhancement on ...
We present here an experimental set-up system to excite and measure simultaneously surface plasmon r...
The terahertz regime has until recently been some what neglected due to the difficulty of generating...
The surface plasmon resonance (SPR) phenomenon has been known for nearly five decades now; si...
We present a computational study of terahertz optical properties of a grating-coupled plasmonic stru...
Nanoscale magnetic systems play a decisive role in areas ranging from biology to spintronics. Althou...
6 págs.; 6 figs. ; PACS number s : 73.20.Mf, 42.79.Dj, 42.25.Bs, 78.68. mUsing terahertz time-domain...
Copyright © 2008 American Institute of Physics. This article may be downloaded for personal use only...
We report terahertz surface plasmon resonance (SPR) sensing based on prism-coupling to the spoof sur...
The terahertz regime has until recently been some what neglected due to the difficulty of generating...
Surface plasmon resonance (SPR) occurs at the interface of a semiconductor and a dielectric when cer...
We investigated the spoof surface plasmon polaritons (SSPPs) on 1D grooved metal surface for teraher...
Surface plasmon waves are transverse magnetic electromagnetic waves propagating along a dielectric-m...
We present in this chapter an introduction to the field of terahertz (THz) plasmonics. The character...
The spoof surface plasmon polaritons (SSPPs) structure can be used as a sensor in THz region for the...
The surface plasmon resonance (SPR) between metal and dielectric material has a good enhancement on ...
We present here an experimental set-up system to excite and measure simultaneously surface plasmon r...
The terahertz regime has until recently been some what neglected due to the difficulty of generating...
The surface plasmon resonance (SPR) phenomenon has been known for nearly five decades now; si...
We present a computational study of terahertz optical properties of a grating-coupled plasmonic stru...
Nanoscale magnetic systems play a decisive role in areas ranging from biology to spintronics. Althou...
6 págs.; 6 figs. ; PACS number s : 73.20.Mf, 42.79.Dj, 42.25.Bs, 78.68. mUsing terahertz time-domain...