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2篇 您的检索式:作者名="Daisuke Barada"
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1Holographic augmented reality display with conical holographic optical element for wide viewing zone显示文摘In this study, we propose a holographic augmented reality (AR) display with a wide viewing zone realized by using a special-designed reflective optical element. A conical holographic optical element (HOE) is used as such a reflective optical element. This conical HOE was implemented to reconstruct a diverging spherical wave with a wide spread angle. It has a sharp wavelength selectivity by recording it as a volume hologram, enabling augmented reality (AR) representation of real and virtual 3D objects. The quality of the generated spherical wave and the spectral reflectivity of the fabricated conical HOE were investigated. An optical superimposition between real and virtual 3D objects was demonstrated, thereby enhancing the validity of our proposed method. A horizontal viewing zone of 140° and a vertical viewing zone of 30° were experimentally confirmed. The fabrication procedure for the conical HOE is presented, and the calculation method of the computer-generated hologram (CGH) based on Fermat’s principle is explained in detail.Yusuke Sando Kazuo Satoh Daisuke Barada Toyohiko Yatagai 2022Light(Advanced Manufacturing)2022,3,1:4
2Controllability of intense-laser ion acceleration显示文摘An ion beam has the unique feature of being able to deposit its main energy inside a human body to kill cancer cells or inside material. However, conventional ion accelerators tend to be huge in size and cost. In this paper, a future intenselaser ion accelerator is discussed to make the laser-based ion accelerator compact and controllable. The issues in the laser ion accelerator include the energy efficiency from the laser to the ions, the ion beam collimation, the ion energy spectrum control, the ion beam bunching, and the ion particle energy control. In the study, each component is designed to control the ion beam quality by particle simulations. The energy efficiency from the laser to ions is improved by using a solid target with a fine sub-wavelength structure or a near-critical-density gas plasma. The ion beam collimation is performed by holes behind the solid target or a multi-layered solid target. The control of the ion energy spectrum and the ion particle energy, and the ion beam bunching are successfully realized by a multi-stage laser–target interaction.Shigeo Kawata Toshihiro Nagashima Masahiro Takano Takeshi Izumiyama Daiki Kamiyama Daisuke Barada Qing Kong Yan Jun Gu Ping Xiao Wang Yan Yun Ma Wei Ming Wang Wu Zhang Jiang Xie Huiran Zhang Dongbo Dai 2014High Power Laser Science and Engineering2014,2,1:0
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