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Physical Review Letters|March 14, 2003
Theoretical study of the optical manipulation of semiconductor nanoparticles under an excitonic resonance conditionTakuya Iida, Hajime IshiharaPhysical Review Letters|October 10, 2006
Force control between quantum dots by light in polaritonic molecule statesTakuya Iida, Hajime IshiharaOptics Letters|November 17, 2007
Study of the mechanical interaction between an electromagnetic field and a nanoscopic thin film near electronic resonanceTakuya Iida, Hajime IshiharaOptics Express|November 23, 2021
Formulation of resonant optical force based on the microscopic structure of chiral moleculesTakao Horai, Hiroki Eguchi, Takuya Iida, et al.Scientific Reports|June 6, 2014
Fabrication of single-crystalline microspheres with high sphericity from anisotropic materialsShinya Okamoto, Kazuhiro Inaba, Takuya Iida, et al.The Journal of Physical Chemistry Letters|August 20, 2015
Control of Plasmonic Superradiance in Metallic Nanoparticle Assembly by Light-Induced Force and FluctuationsTakuya IidaPhysical Review Letters|September 28, 2010
Entangled-photon generation in nano-to-bulk crossover regimeMotoaki Bamba, Hajime IshiharaOptics Express|October 12, 2022
Optical force spectroscopy for measurement of nonlinear optical coefficient of single nanoparticles through optical manipulationTakudo Wada, Hajime IshiharaPhysical Chemistry Chemical Physics : PCCP|August 3, 2013
Resonance optical manipulation of nano-objects based on nonlinear optical responseTetsuhiro Kudo, Hajime IshiharaPhysical Review Letters|June 4, 2008
Highly efficient generation of entangled photons by controlling cavity bipolariton statesHisaki Oka, Hajime IshiharaPageof 22