Title :
THz spectroscopy of a pseudo-simple cubic photonic band structure
Author :
Haus, J.W. ; Yuan, Zhiliang ; Aoki, Toyohiro ; Takeda, M.W. ; Tani, Motoaki ; Sakai, Kenji ; Kawai, N. ; Inoue, Ken
Author_Institution :
Electro-Opt. Program, Dayton Univ., OH, USA
Abstract :
Summary form only given. A simple cubic (SC) structure exhibiting a photonic band gap (PBG) was proposed by Sozuer and Haus (1993). Recently, Wada et al. (1997) reported a comparison between the FTIR transmission spectra of a pseudo-simple cubic lattice with theoretical transfer matrix results. The sample is composed of air rods with square and circular shaped rods made of silicon with the respective lattice constant of 0.53 mm. Phase changes are deduced from the dispersion curves and are very important for estimating the group velocity. However, the finite-size of the sample introduces a coupling between forward and backward waves that modifies both the phase and the group velocity from that expected by the band structure alone. This is clearly illustrated in our experimental data and in the simulations. A new photonic crystal of pseudo-simple cubic lattice composed of all circular air-rods was fabricated from a silicon wafer. It was constructed using a wet etching and diamond saw techniques.
Keywords :
elemental semiconductors; etching; infrared spectra; optical fabrication; optical materials; photonic band gap; silicon; FTIR transmission spectra; Si; Si wafer; THz spectroscopy; air rods; all circular air-rods; backward waves; band structure; circular shaped rods; coupling; diamond saw techniques; dispersion curves; experimental data; fabrication; finite-size; forward waves; group velocity; lattice constant; phase changes; photonic band gap; photonic crystal; pseudo-simple cubic lattice; pseudo-simple cubic photonic band structure; sample; simple cubic structure; simulations; square shaped rods; transfer matrix results; wet etching; Couplings; Dielectrics; Filling; Frequency; Large Hadron Collider; Photonic band gap; Silicon; Spectroscopy; Wet etching;
Conference_Titel :
Quantum Electronics and Laser Science Conference, 2000. (QELS 2000). Technical Digest
Conference_Location :
San Francisco, CA, USA
Print_ISBN :
1-55752-608-7