The Experts below are selected from a list of 327 Experts worldwide ranked by ideXlab platform
Hiroaki Sugiura - One of the best experts on this subject based on the ideXlab platform.
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3 4 invited paper laser tv ultra wide Color gamut in conformity with xvycc
SID Symposium Digest of Technical Papers, 2007Co-Authors: Hiroaki Sugiura, Shuichi Kagawa, Muneharu Kuwata, Yoko Inoue, Tomohiro Sasagawa, Akihiro Nagase, Norihiro Watanabe, Jun SomeyaAbstract:This paper provides some interpretations of the Laser TV which we have successfully developed [1]. The Laser TV is an HDTV that adopts solid state lasers involving three primary Colors, red, green and blue for the light source. The adoption of a laser light source helped us realize an HDTV with a dramatically wide Color gamut, namely 190% the Color gamut of ITU-R BT.709. In addition, we have also developed an LSI that can deal with the extended Color space xvYCC, which is a new international standard, and mounted the LSI in the HDTV. The display of Colorful and natural video pictures has been achieved through the effective use of the wide Color gamut involved in the laser light source supported by a video signal processing circuit that complies with the xvYCC standard and Natural Color Matrix, a Color management technique.
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19 3 laser tv ultra wide gamut for a new extended Color space standard xvycc
SID Symposium Digest of Technical Papers, 2006Co-Authors: Jun Someya, Shuichi Kagawa, Muneharu Kuwata, Yoko Inoue, Tomohiro Sasagawa, Hideki Yoshii, Atsushi Michimori, Hideyuki Kaneko, Hiroaki SugiuraAbstract:We have developed an HDTV that adopts semiconductor lasers involving three primary Colors, red, green and blue for the light source. The adoption of a laser light source helped us realize a HDTV with a dramatically wide Color gamut, namely 190% the Color gamut of ITR-U BT.709. In addition, we have also developed an LSI that can deal with an extended Color space xvYCC, which is a new international standard, and mounted the LSI in the HDTV. The display of Colorful and natural video pictures has been achieved through the effective use of the wide Color gamut involved in the laser light source supported by a video signal processing circuit that complies with the xvYCC standard and Natural Color Matrix, a Color management technique.
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19.3: Laser TV: Ultra‐Wide Gamut for a New Extended Color‐Space Standard, xvYCC
SID Symposium Digest of Technical Papers, 2006Co-Authors: Jun Someya, Shuichi Kagawa, Muneharu Kuwata, Yoko Inoue, Tomohiro Sasagawa, Hideki Yoshii, Atsushi Michimori, Hideyuki Kaneko, Hiroaki SugiuraAbstract:We have developed an HDTV that adopts semiconductor lasers involving three primary Colors, red, green and blue for the light source. The adoption of a laser light source helped us realize a HDTV with a dramatically wide Color gamut, namely 190% the Color gamut of ITR-U BT.709. In addition, we have also developed an LSI that can deal with an extended Color space xvYCC, which is a new international standard, and mounted the LSI in the HDTV. The display of Colorful and natural video pictures has been achieved through the effective use of the wide Color gamut involved in the laser light source supported by a video signal processing circuit that complies with the xvYCC standard and Natural Color Matrix, a Color management technique.
Jun Someya - One of the best experts on this subject based on the ideXlab platform.
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3 4 invited paper laser tv ultra wide Color gamut in conformity with xvycc
SID Symposium Digest of Technical Papers, 2007Co-Authors: Hiroaki Sugiura, Shuichi Kagawa, Muneharu Kuwata, Yoko Inoue, Tomohiro Sasagawa, Akihiro Nagase, Norihiro Watanabe, Jun SomeyaAbstract:This paper provides some interpretations of the Laser TV which we have successfully developed [1]. The Laser TV is an HDTV that adopts solid state lasers involving three primary Colors, red, green and blue for the light source. The adoption of a laser light source helped us realize an HDTV with a dramatically wide Color gamut, namely 190% the Color gamut of ITU-R BT.709. In addition, we have also developed an LSI that can deal with the extended Color space xvYCC, which is a new international standard, and mounted the LSI in the HDTV. The display of Colorful and natural video pictures has been achieved through the effective use of the wide Color gamut involved in the laser light source supported by a video signal processing circuit that complies with the xvYCC standard and Natural Color Matrix, a Color management technique.
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19 3 laser tv ultra wide gamut for a new extended Color space standard xvycc
SID Symposium Digest of Technical Papers, 2006Co-Authors: Jun Someya, Shuichi Kagawa, Muneharu Kuwata, Yoko Inoue, Tomohiro Sasagawa, Hideki Yoshii, Atsushi Michimori, Hideyuki Kaneko, Hiroaki SugiuraAbstract:We have developed an HDTV that adopts semiconductor lasers involving three primary Colors, red, green and blue for the light source. The adoption of a laser light source helped us realize a HDTV with a dramatically wide Color gamut, namely 190% the Color gamut of ITR-U BT.709. In addition, we have also developed an LSI that can deal with an extended Color space xvYCC, which is a new international standard, and mounted the LSI in the HDTV. The display of Colorful and natural video pictures has been achieved through the effective use of the wide Color gamut involved in the laser light source supported by a video signal processing circuit that complies with the xvYCC standard and Natural Color Matrix, a Color management technique.
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19.3: Laser TV: Ultra‐Wide Gamut for a New Extended Color‐Space Standard, xvYCC
SID Symposium Digest of Technical Papers, 2006Co-Authors: Jun Someya, Shuichi Kagawa, Muneharu Kuwata, Yoko Inoue, Tomohiro Sasagawa, Hideki Yoshii, Atsushi Michimori, Hideyuki Kaneko, Hiroaki SugiuraAbstract:We have developed an HDTV that adopts semiconductor lasers involving three primary Colors, red, green and blue for the light source. The adoption of a laser light source helped us realize a HDTV with a dramatically wide Color gamut, namely 190% the Color gamut of ITR-U BT.709. In addition, we have also developed an LSI that can deal with an extended Color space xvYCC, which is a new international standard, and mounted the LSI in the HDTV. The display of Colorful and natural video pictures has been achieved through the effective use of the wide Color gamut involved in the laser light source supported by a video signal processing circuit that complies with the xvYCC standard and Natural Color Matrix, a Color management technique.
Shinji Takeda - One of the best experts on this subject based on the ideXlab platform.
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Automatic generation of Feynman rules in the Schrödinger functional
Nuclear Physics B, 2009Co-Authors: Shinji TakedaAbstract:We provide an algorithm to generate vertices for the Schr\"odinger functional with an abelian background gauge field. The background field has a non-trivial Color structure, therefore we mainly focus on a manipulation of the Color Matrix part. We propose how to implement the algorithm especially in python code. By using python outputs produced by the code, we also show how to write a numerical expression of vertices in the time-momentum as well as the coordinate space into a Feynman diagram calculation code. As examples of the applications of the algorithm, we provide some one-loop results, ratios of the Lambda parameters between the plaquette gauge action and the improved gauge actions composed from six-link loops (rectangular, chair and parallelogram), the determination of the O(a) boundary counter term to this order, and the perturbative cutoff effects of the step scaling function of the Schroedinger functional coupling constant.Comment: 34 pages, 4 figure
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Automatic generation of Feynman rules in the Schrodinger functional
Nuclear Physics, 2008Co-Authors: Shinji TakedaAbstract:We provide an algorithm to generate vertices for the Schrodinger functional with an abelian background gauge field. The background field has a non-trivial Color structure, therefore we mainly focus on a manipulation of the Color Matrix part. We propose how to implement the algorithm especially in python code. By using python outputs produced by the code, we also show how to write a numerical expression of vertices in the time-momentum as well as the coordinate space into a Feynman diagram calculation code. As examples of the applications of the algorithm, we provide some one-loop results, ratios of the Λ parameters between the plaquette gauge action and the improved gauge actions composed from six-link loops (rectangular, chair and parallelogram), the determination of the O(a) boundary counter term to this order, and the perturbative cutoff effects of the step scaling function of the Schrodinger functional coupling constant.
Yoko Inoue - One of the best experts on this subject based on the ideXlab platform.
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3 4 invited paper laser tv ultra wide Color gamut in conformity with xvycc
SID Symposium Digest of Technical Papers, 2007Co-Authors: Hiroaki Sugiura, Shuichi Kagawa, Muneharu Kuwata, Yoko Inoue, Tomohiro Sasagawa, Akihiro Nagase, Norihiro Watanabe, Jun SomeyaAbstract:This paper provides some interpretations of the Laser TV which we have successfully developed [1]. The Laser TV is an HDTV that adopts solid state lasers involving three primary Colors, red, green and blue for the light source. The adoption of a laser light source helped us realize an HDTV with a dramatically wide Color gamut, namely 190% the Color gamut of ITU-R BT.709. In addition, we have also developed an LSI that can deal with the extended Color space xvYCC, which is a new international standard, and mounted the LSI in the HDTV. The display of Colorful and natural video pictures has been achieved through the effective use of the wide Color gamut involved in the laser light source supported by a video signal processing circuit that complies with the xvYCC standard and Natural Color Matrix, a Color management technique.
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19 3 laser tv ultra wide gamut for a new extended Color space standard xvycc
SID Symposium Digest of Technical Papers, 2006Co-Authors: Jun Someya, Shuichi Kagawa, Muneharu Kuwata, Yoko Inoue, Tomohiro Sasagawa, Hideki Yoshii, Atsushi Michimori, Hideyuki Kaneko, Hiroaki SugiuraAbstract:We have developed an HDTV that adopts semiconductor lasers involving three primary Colors, red, green and blue for the light source. The adoption of a laser light source helped us realize a HDTV with a dramatically wide Color gamut, namely 190% the Color gamut of ITR-U BT.709. In addition, we have also developed an LSI that can deal with an extended Color space xvYCC, which is a new international standard, and mounted the LSI in the HDTV. The display of Colorful and natural video pictures has been achieved through the effective use of the wide Color gamut involved in the laser light source supported by a video signal processing circuit that complies with the xvYCC standard and Natural Color Matrix, a Color management technique.
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19.3: Laser TV: Ultra‐Wide Gamut for a New Extended Color‐Space Standard, xvYCC
SID Symposium Digest of Technical Papers, 2006Co-Authors: Jun Someya, Shuichi Kagawa, Muneharu Kuwata, Yoko Inoue, Tomohiro Sasagawa, Hideki Yoshii, Atsushi Michimori, Hideyuki Kaneko, Hiroaki SugiuraAbstract:We have developed an HDTV that adopts semiconductor lasers involving three primary Colors, red, green and blue for the light source. The adoption of a laser light source helped us realize a HDTV with a dramatically wide Color gamut, namely 190% the Color gamut of ITR-U BT.709. In addition, we have also developed an LSI that can deal with an extended Color space xvYCC, which is a new international standard, and mounted the LSI in the HDTV. The display of Colorful and natural video pictures has been achieved through the effective use of the wide Color gamut involved in the laser light source supported by a video signal processing circuit that complies with the xvYCC standard and Natural Color Matrix, a Color management technique.
Tomohiro Sasagawa - One of the best experts on this subject based on the ideXlab platform.
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3 4 invited paper laser tv ultra wide Color gamut in conformity with xvycc
SID Symposium Digest of Technical Papers, 2007Co-Authors: Hiroaki Sugiura, Shuichi Kagawa, Muneharu Kuwata, Yoko Inoue, Tomohiro Sasagawa, Akihiro Nagase, Norihiro Watanabe, Jun SomeyaAbstract:This paper provides some interpretations of the Laser TV which we have successfully developed [1]. The Laser TV is an HDTV that adopts solid state lasers involving three primary Colors, red, green and blue for the light source. The adoption of a laser light source helped us realize an HDTV with a dramatically wide Color gamut, namely 190% the Color gamut of ITU-R BT.709. In addition, we have also developed an LSI that can deal with the extended Color space xvYCC, which is a new international standard, and mounted the LSI in the HDTV. The display of Colorful and natural video pictures has been achieved through the effective use of the wide Color gamut involved in the laser light source supported by a video signal processing circuit that complies with the xvYCC standard and Natural Color Matrix, a Color management technique.
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19 3 laser tv ultra wide gamut for a new extended Color space standard xvycc
SID Symposium Digest of Technical Papers, 2006Co-Authors: Jun Someya, Shuichi Kagawa, Muneharu Kuwata, Yoko Inoue, Tomohiro Sasagawa, Hideki Yoshii, Atsushi Michimori, Hideyuki Kaneko, Hiroaki SugiuraAbstract:We have developed an HDTV that adopts semiconductor lasers involving three primary Colors, red, green and blue for the light source. The adoption of a laser light source helped us realize a HDTV with a dramatically wide Color gamut, namely 190% the Color gamut of ITR-U BT.709. In addition, we have also developed an LSI that can deal with an extended Color space xvYCC, which is a new international standard, and mounted the LSI in the HDTV. The display of Colorful and natural video pictures has been achieved through the effective use of the wide Color gamut involved in the laser light source supported by a video signal processing circuit that complies with the xvYCC standard and Natural Color Matrix, a Color management technique.
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19.3: Laser TV: Ultra‐Wide Gamut for a New Extended Color‐Space Standard, xvYCC
SID Symposium Digest of Technical Papers, 2006Co-Authors: Jun Someya, Shuichi Kagawa, Muneharu Kuwata, Yoko Inoue, Tomohiro Sasagawa, Hideki Yoshii, Atsushi Michimori, Hideyuki Kaneko, Hiroaki SugiuraAbstract:We have developed an HDTV that adopts semiconductor lasers involving three primary Colors, red, green and blue for the light source. The adoption of a laser light source helped us realize a HDTV with a dramatically wide Color gamut, namely 190% the Color gamut of ITR-U BT.709. In addition, we have also developed an LSI that can deal with an extended Color space xvYCC, which is a new international standard, and mounted the LSI in the HDTV. The display of Colorful and natural video pictures has been achieved through the effective use of the wide Color gamut involved in the laser light source supported by a video signal processing circuit that complies with the xvYCC standard and Natural Color Matrix, a Color management technique.