Temperature Controlled Filamentation in Argon Gas
Cao Shi-Ying, Kong Wei-Peng, Song Zhen-Ming, Yu Qin, Ruxin Li, Wang Qing-Yue, Zhang Zhi-Gang
Abstract
Cao Shi-Ying, Kong Wei-Peng, Song Zhen-Ming, Yu Qin, Ruxin Li, Wang Qing-Yue, Zhang Zhi-Gang
Abstract
Temperature controlled filamentation is experimentally demonstrated in a temperature gradient gas-filled tube. The proper position of the tube is heated by a furnace and two ends of the tube are cooled by air. The experimental results show that multiple filaments are shrunken into a single filament or no filament only by increasing the temperature at the beginning of the filament. This technique offers another degree of freedom of controlling the filamentation and opens a new way for intense monocycle pulse generation through gradient temperature in a noble gas.
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Temperature controlled filamentation is experimentally demonstrated in a temperature gradient gas-filled tube. The proper position of the tube is heated by a furnace and two ends of the tube are cooled by air. The experimental results show that multiple filaments are shrunken into a single filament or no filament only by increasing the temperature at the beginning of the filament. This technique offers another degree of freedom of controlling the filamentation and opens a new way for intense monocycle pulse generation through gradient temperature in a noble gas.
Key concepts: Filamentation, Protein filament, Temperature gradient, Materials science, Tube (container), Argon, Noble gas, Mechanics