The 76th JSAP Autumn Meeting, 2015

Presentation information

Oral presentation

3 Optics and Photonics » 3.14 Optical control devices and optical fibers

[16a-2F-1~12] 3.14 Optical control devices and optical fibers

3.5と3.14のコードシェアセッションあり

Wed. Sep 16, 2015 9:00 AM - 12:15 PM 2F (221-2)

座長:各務 学(豊田中研)

10:00 AM - 10:15 AM

[16a-2F-5] Widening misalignment tolerance in self-organized waveguides by two-photon photochemistry

〇Tetsuzo Yoshimura1, Daisuke Takeda1, Yoshihiko Kinugasa1, Takuya Sato1, Hideyuki Nawata2 (1.Tokyo Univ. of Technology, 2.Nissan Chemical Industries, LTD)

Keywords:self-organized optical waveguides,two-photon photochemistry,self-aligned optical coupling

Self-organized optical waveguides formed in a photopolymer using two-photon photochemistry is proposed for self-aligned optical couplings involving nano-scale optical devices with wide tolerances in lateral misalignments. Simulations based on the finite-difference time-domain method revealed that on introducing a 400-nm write beam and a 780-nm write beam into the two-photon photopolymer respectively from two 600-nm-wide waveguides facing each other with 32-um gap a self-aligned coupling waveguide called a two-photon self-organized lightwave network (SOLNET) is formed between the two waveguides. The lateral misalignment tolerance was found to be 3000 nm, which is five times larger than the misalignment limit of ~600 nm in waveguides formed by conventional one-photon photochemistry. Preliminary experiments demonstrated that the two-photon SOLNETs are formed between multimode optical fibers by introducing a 448-nm write beam and a 780-nm (or 856-nm) write beam from the fibers into a photosensitive organic/inorganic hybrid material, SUNCONNECT®, with doped camphorquinon (or biacetyl).