Lasing Action in Air Induced by Ultrafast Laser Filamentation - Backscattered fluorescence from nitrogen molecules from filaments induced by intense, ultrafast Ti:sapphire laser pulses increases exponentially with an increase in the length of the filament. This shows that the fluorescence undergoes amplified spontaneous emission along the filament direction, a finding that could have applications in lightning discharge control and remote sensing.
Autor*in: |
Luo, Qi [verfasserIn] |
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Erschienen: |
2004 |
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4 |
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Übergeordnetes Werk: |
Enthalten in: Optics & photonics news - Washington, DC : [Verlag nicht ermittelbar], 1990, 15(2004), 9, Seite 44-47 |
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volume:15 ; year:2004 ; number:9 ; pages:44-47 ; extent:4 |
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Lasing Action in Air Induced by Ultrafast Laser Filamentation - Backscattered fluorescence from nitrogen molecules from filaments induced by intense, ultrafast Ti:sapphire laser pulses increases exponentially with an increase in the length of the filament. This shows that the fluorescence undergoes amplified spontaneous emission along the filament direction, a finding that could have applications in lightning discharge control and remote sensing. |
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Lasing Action in Air Induced by Ultrafast Laser Filamentation - Backscattered fluorescence from nitrogen molecules from filaments induced by intense, ultrafast Ti:sapphire laser pulses increases exponentially with an increase in the length of the filament. This shows that the fluorescence undergoes amplified spontaneous emission along the filament direction, a finding that could have applications in lightning discharge control and remote sensing. |
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