TN204 98053465有机蛋白质分子中存在有孤立子激发的实验证实=Experimental proof of soliton excitation in or—ganic protein molecule[刊,中]/庞小峰(中科院国际材料物理中心。辽宁,沈阳(110015))∥物理。—1997,26(11).—665—670...TN204 98053465有机蛋白质分子中存在有孤立子激发的实验证实=Experimental proof of soliton excitation in or—ganic protein molecule[刊,中]/庞小峰(中科院国际材料物理中心。辽宁,沈阳(110015))∥物理。—1997,26(11).—665—670综述了为证实其存在所作的红外吸收、喇曼散射、皮秒自由电子激光和泵一针实验等的结果,从这些结果可基本相信这类孤立子的存在,并是生物能量传递的载体。图5参20(李瑞琴)展开更多
By means of the standard truncated Painlevé expansion and a special B?cklund transformation, the higher-dimensional coupled Burgers system (HDCB) is reduced to a linear equation, and an exact multisoliton excitat...By means of the standard truncated Painlevé expansion and a special B?cklund transformation, the higher-dimensional coupled Burgers system (HDCB) is reduced to a linear equation, and an exact multisoliton excitation is derived. The evolution properties of the multisoliton excitation are investigated and some novel features or interesting behaviors are revealed. The results show that after interactions for dromion-dromion, solitoff-solitoff, and solitoff-dromion, they are combined with some new types of localized structures, which are similar to classic particles with completely nonelastic behaviors.展开更多
文摘TN204 98053465有机蛋白质分子中存在有孤立子激发的实验证实=Experimental proof of soliton excitation in or—ganic protein molecule[刊,中]/庞小峰(中科院国际材料物理中心。辽宁,沈阳(110015))∥物理。—1997,26(11).—665—670综述了为证实其存在所作的红外吸收、喇曼散射、皮秒自由电子激光和泵一针实验等的结果,从这些结果可基本相信这类孤立子的存在,并是生物能量传递的载体。图5参20(李瑞琴)
文摘By means of the standard truncated Painlevé expansion and a special B?cklund transformation, the higher-dimensional coupled Burgers system (HDCB) is reduced to a linear equation, and an exact multisoliton excitation is derived. The evolution properties of the multisoliton excitation are investigated and some novel features or interesting behaviors are revealed. The results show that after interactions for dromion-dromion, solitoff-solitoff, and solitoff-dromion, they are combined with some new types of localized structures, which are similar to classic particles with completely nonelastic behaviors.