CVClient

瀬戸浦 健仁

セトウラ ケンジ  (Kenji Setoura)

基本情報

所属
兵庫県立大学 工学研究科 電気物性工学専攻 准教授
学位
博士(工学)(2017年3月 大阪大学)

研究者番号
90804089
ORCID ID
 https://orcid.org/0000-0002-4610-7407
researchmap会員ID
B000344137

外部リンク

 兵庫県城崎郡香住町というズワイガニの揚がる漁師町の出身です。光に関する様々なことに興味を持って研究をしています。


研究キーワード

 2

学歴

 4

論文

 35
  • Koki Ide, Tetsuro Tsuji, Takayuki Suzuki, Syoji Ito, Kenji Setoura
    Journal of Applied Physics 138(14) 2025年10月8日  査読有り最終著者責任著者
    Optothermal manipulations, which combine optical tweezers with thermal effects, have recently attracted significant interest. In this study, we developed a Brownian dynamics simulation (BDS) model incorporating optical gradient forces, optical dissipative forces, and thermophoretic forces to evaluate optothermal trapping of polystyrene nanoparticles in water containing polyethylene glycol 6000 (PEG 6000), induced by a focused near-infrared laser beam. The addition of PEG 6000 to water reverses the transport direction, causing thermophoresis from cold to hot and helping to trap particles at the laser focus. In our simulations, we focused on the trapping behavior of nanoparticles under two laser wavelengths: 1064 and 1560 nm. Their markedly different absorption in water alters the balance between optical and thermophoretic forces. At the laser wavelength of 1560 nm, the high absorption coefficient of water prevents the use of high laser intensity. As a result, thermophoresis led to loose nanoparticle accumulation around the laser spot rather than tight optical trapping. In contrast, at 1064 nm, the use of high laser intensity generated a deep optical trapping potential. Combined with moderate thermophoretic assistance—driven by a temperature increase of several Kelvin—this resulted in a markedly higher trapping efficiency for nanoparticles. Thus, our BDS model enables the quantitative separation and evaluation of optical and thermal forces in optothermal manipulation and is useful for designing manipulation behaviors ranging from loose accumulation to tighter confinement. The BDS script is freely available in the supplementary material.
  • Koki Ide, Tetsuro Tsuji, Takayuki Suzuki, Kenji Setoura
    ACS Omega 10(5) 4526-4533 2025年1月30日  査読有り最終著者責任著者
  • Kenji Setoura, Mamoru Tamura, Tomoya Oshikiri, Takuya Iida
    RSC Advances 13(49) 34489-34496 2023年11月  査読有り筆頭著者責任著者
    Nanoscale temperature distributions can be dramatically switched by high-order plasmonic modes in transition metal nanorods.
  • Kenji Setoura, Takayasu kakimoto, Hiroshi Miyasaka, Syoji Ito
    Photochemical & Photobiological Sciences 22(11) 2519-2526 2023年9月16日  査読有り筆頭著者
    Abstract We have demonstrated in the present report that dielectric microparticles exhibited orbital rotation in the light field of non-coaxially configured two counter-propagating laser beams both in numerical simulations and experiments. A series of computational simulations indicated that when irradiated with two non-coaxially counter-propagating parallel laser beams with the same intensity distributions in the absence of thermal (Brownian) motion, a microparticle did not exhibit orbital rotation due to the symmetry of the optical field. However, the computations predicted that a microparticle exhibited one directional orbital rotation in the presence of thermal motion because of the symmetry breaking of the optical force acting on the particle. This spontaneous orbital rotation was experimentally demonstrated for 1-µm dielectric particles in water at room temperature. Graphical abstract
  • Syoji Ito, Kenji Setoura, Hiroshi Miyasaka
    Proceedings of SPIE - The International Society for Optical Engineering 12606 2023年  

講演・口頭発表等

 13

主要な所属学協会

 2

共同研究・競争的資金等の研究課題

 10

社会貢献活動

 1