TY - GEN
T1 - Optical resonance of nanometer scale bow-tie antenna and bow-tie shaped aperture antenna
AU - Wu, Yu Ming
AU - Li, Le Wei
AU - Liu, Bo
PY - 2009
Y1 - 2009
N2 - In this paper, the nanometer scale bow-tie antenna and its geometrically complementary bow-tie shaped aperture antenna are proposed and discussed focusing on their optical resonance characteristics. To demonstrate such structures, the finite integration technique is developed in broad band calculations especially in the visible and infrared region. Characterized by surface plasmon resonance, localized strong field are found at the separation gap of the bow-tie antenna, thus providing satisfying near-field confinement and enhancement. In addition, the resonant properties depending on the effects of the geometrical parameters of length and gap distance are systematical studied. Furthermore, comparison of the performances between the two structures is presented for the first time. This investigation can be applied to near-field optical detection or imaging, scanning probe microscopy, lithography and optical manipulation, which has a promising prospect for nanoantennas.
AB - In this paper, the nanometer scale bow-tie antenna and its geometrically complementary bow-tie shaped aperture antenna are proposed and discussed focusing on their optical resonance characteristics. To demonstrate such structures, the finite integration technique is developed in broad band calculations especially in the visible and infrared region. Characterized by surface plasmon resonance, localized strong field are found at the separation gap of the bow-tie antenna, thus providing satisfying near-field confinement and enhancement. In addition, the resonant properties depending on the effects of the geometrical parameters of length and gap distance are systematical studied. Furthermore, comparison of the performances between the two structures is presented for the first time. This investigation can be applied to near-field optical detection or imaging, scanning probe microscopy, lithography and optical manipulation, which has a promising prospect for nanoantennas.
KW - Antennas
KW - Aperture antennas
KW - Optical resonance
UR - http://www.scopus.com/inward/record.url?scp=77950631038&partnerID=8YFLogxK
U2 - 10.1109/APMC.2009.5384176
DO - 10.1109/APMC.2009.5384176
M3 - Conference contribution
AN - SCOPUS:77950631038
SN - 9781424428021
T3 - APMC 2009 - Asia Pacific Microwave Conference 2009
SP - 543
EP - 546
BT - APMC 2009 - Asia Pacific Microwave Conference 2009
T2 - Asia Pacific Microwave Conference 2009, APMC 2009
Y2 - 7 December 2009 through 10 December 2009
ER -