His main research concerns Crystal, Crystallography, Nonlinear optics, Crystal growth and Laser. His studies deal with areas such as Orthorhombic crystal system, Triclinic crystal system, Molecular physics, Irradiation and Analytical chemistry as well as Crystal. His Crystallography research incorporates elements of Substrate, Diffraction and Epitaxy.
His Nonlinear optics study incorporates themes from Inorganic chemistry, Optoelectronics and Lithium borate. His research integrates issues of Nonlinear optical, Full width at half maximum, Crystal structure and Nucleation in his study of Crystal growth. His research on Laser concerns the broader Optics.
His primary areas of study are Optics, Crystal, Laser, Optoelectronics and Analytical chemistry. His study ties his expertise on Energy conversion efficiency together with the subject of Optics. His Crystal research includes elements of Inorganic chemistry, Crystal growth, Nonlinear optical and Crystallinity.
His research on Laser often connects related areas such as Irradiation. His Optoelectronics research integrates issues from Absorption, Boron and Nonlinear optical crystal. His work deals with themes such as Single crystal, Flux method, Diamond and Epitaxy, which intersect with Analytical chemistry.
Takatomo Sasaki mainly investigates Crystallography, Analytical chemistry, Crystal, Optoelectronics and Laser. His research in Crystallography intersects with topics in Diffraction, Scanning electron microscope and Nucleation. Takatomo Sasaki combines subjects such as Crystallinity, Flux method, Morphology and Flux growth with his study of Analytical chemistry.
His Crystal study integrates concerns from other disciplines, such as Rubrene, Crystal growth and Inorganic chemistry. The study incorporates disciplines such as Optical pumping, Absorption and Nonlinear optical crystal in addition to Optoelectronics. His study with Laser involves better knowledge in Optics.
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CsB3O5: A new nonlinear optical crystal
Yicheng Wu;Takatomo Sasaki;Sadao Nakai;Atsushi Yokotani.
Applied Physics Letters (1993)
Recent development of nonlinear optical borate crystals: key materials for generation of visible and UV light
Takatomo Sasaki;Yusuke Mori;Masashi Yoshimura;Yoke Khin Yap.
Materials Science & Engineering R-reports (2000)
Crystal Growth and Optical Characterization of Rare-Earth (Re) Calcium Oxyborate ReCa4O(BO3)3 (Re=Y or Gd) as New Nonlinear Optical Material.
Makoto Iwai;Taisuke Kobayashi;Hiroyuki Furuya;Yusuke Mori.
Japanese Journal of Applied Physics (1997)
Nonlinear optical borate crystals : principles and applications
Chuangtian Chen;Takatomo Sasaki;Rukang Li;Yincheng Wu.
(2012)
A New Nonlinear Optical Borate Crystal K2Al2B2O7 (KAB)
Zhang–Gui Hu;Tetsuji Higashiyama;Masashi Yoshimura;Yoke Khin Yap.
Japanese Journal of Applied Physics (1998)
Extremely high damage threshold of a new nonlinear crystal L-arginine phosphate and its deuterium compound
Atsushi Yokotani;Takatomo Sasaki;Kunio Yoshida;Sadao Nakai.
Applied Physics Letters (1989)
Laser irradiated growth of protein crystal
Hiroaki Adachi;Kazufumi Takano;Youichiroh Hosokawa;Tsuyoshi Inoue.
Japanese Journal of Applied Physics (2003)
Nd-doped phosphate glass laser systems for laser-fusion research
C. Yamanaka;Y. Kato;Y. Izawa;K. Yoshida.
IEEE Journal of Quantum Electronics (1981)
Effect of carbon additive on increases in the growth rate of 2 in GaN single crystals in the Na flux method
Fumio Kawamura;Masanori Morishita;Masaki Tanpo;Mamoru Imade.
Journal of Crystal Growth (2008)
Dome-shaped magnetic phase diagram of thermoelectric layered cobaltites.
J. Sugiyama;J. H. Brewer;E. J. Ansaldo;H. Itahara.
Physical Review Letters (2004)
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