- Ithaca NY, US Kriti Charan - Freeville NY, US Bo Li - Ithaca NY, US Michael Buttolph - Ithaca NY, US
International Classification:
A61B 5/00 H01S 3/067 G02B 21/00
Abstract:
A system and method for adaptive illumination, the imaging system comprising an excitation source having a modulator, which generates a pulse intensity pattern having a first wavelength when the excitation source receives a modulation pattern. The modulation pattern is a data sequence of a structural image of a sample. An amplifier of the imaging system is configured to receive and amplify the pulse intensity pattern from the modulator. A frequency shift mechanism of the imaging system shifts the first wavelength of the pulse intensity pattern to a second wavelength. A laser scanning microscope of the imaging system receives the pulse intensity pattern having the second wavelength.
Adaptive Illumination Apparatus, Method, And Applications
- Ithaca NY, US Kriti Charan - Freeville NY, US Bo Li - Ithaca NY, US Michael Buttolph - Ithaca NY, US
Assignee:
CORNELL UNIVERSITY - Ithaca NY
International Classification:
A61B 5/00 H01S 3/067
Abstract:
A system and method for adaptive illumination, the imaging system comprising an excitation source having a modulator, which generates a pulse intensity pattern having a first wavelength when the excitation source receives a modulation pattern. The modulation pattern is a data sequence of a structural image of a sample. An amplifier of the imaging system is configured to receive and amplify the pulse intensity pattern from the modulator. A frequency shift mechanism of the imaging system shifts the first wavelength of the pulse intensity pattern to a second wavelength. A laser scanning microscope of the imaging system receives the pulse intensity pattern having the second wavelength.
Fueling Method For Small, Steady-State, Aneutronic Frc Fusion Reactors
- Princeton NJ, US Daren Stotler - Plainsboro NJ, US Michael Buttolph - Rumney NH, US
International Classification:
G21K 1/14 H05H 1/02
Abstract:
A system and method for fueling a fusion reactor. The system includes a reactor chamber containing a stable plasma including a fusion fuel; a heating system configured to heat the plasma and increase an ion energy of the plasma to a level sufficient for producing net power from fusion reactions in the stable plasma; a plurality of magnets coaxial to the reactor chamber, the plurality of magnets producing a magnetic field sufficient to confine the stable plasma and promote rapid loss of fusion products into a scrape off layer; and a neutral beam injection system configured to inject additional quantities of the fusion fuel to sustain the power output of the fusion reaction.
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