All-fiber chirped pulse amplification systems
US-2015255942-A1 · Sep 10, 2015 · US
US9774160B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9774160-B2 |
| Application number | US-201514837619-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 27, 2015 |
| Priority date | Mar 31, 2004 |
| Publication date | Sep 26, 2017 |
| Grant date | Sep 26, 2017 |
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A femtosecond laser based laser processing system having a femtosecond laser, frequency conversion optics, beam manipulation optics, target motion control, processing chamber, diagnostic systems and system control modules. The femtosecond laser based laser processing system allows for the utilization of the unique heat control in micromachining, and the system has greater output beam stability, continuously variable repetition rate and unique temporal beam shaping capabilities.
Opening claim text (preview).
What is claimed is: 1. A pulse source, comprising: a seed source configured to emit seed pulses; a pulse separator disposed downstream from said seed source and configured to receive, as an input pulse, one of said seed pulses emitted by said seed source, said pulse separator configured to temporally separate said input pulse into first and second time separated pulse components, wherein each of said first and second time separated pulse components comprises a pulse energy less than an energy of said input pulse; at least one fiber amplifier configured to receive and amplify said first and second time separated pulse components and to thereby generate amplified first and second time separated pulse components; and a pulse recombiner which recombines said amplified first and second time separated pulse components into a reconstructed output pulse having greater pulse energy than said input pulse, wherein said seed source generates ultrashort pulses. 2. The pulse source according to claim 1 , wherein said pulse separator comprises a series of fiber gratings operating on different portions of an input pulse spectrum, and said first and second time separated pulse components comprise spectral components. 3. The pulse source according to claim 1 , wherein said pulse recombiner comprises a grating compressor. 4. The pulse source according to claim 3 , wherein said grating compressor consists of a single compression grating. 5. The pulse source according to claim 1 , wherein said pulse recombiner comprises air separated, bulk glass Bragg grating compressors. 6. The pulse source according to claim 5 , further comprising: a series of fiber gratings operating on different portions of an input pulse spectrum, wherein said air separated, bulk glass Bragg grating compressors are spaced in such a way as to complement said series of fiber gratings, such that said reconstructed output pulse is formed as a single, compressed pulse. 7. The pulse source according to claim 1 , wherein said pulse source further comprises an optical modulator disposed between said seed source and said pulse separator. 8. The pulse source according to claim 1 , wherein said reconstructed output pulse is formed via incoherent addition of said amplified first and second time separated pulse components. 9. The pulse source according to claim 1 , wherein said pulse separator and said pulse recombiner each comprise a polarizing beam splitter. 10. The pulse source according to claim 1 , wherein said ultrashort pulses comprise femtosecond pulses.
Temporal shaping, e.g. pulse compression, frequency chirping (soliton generation and propagation G02F1/3513, H01S3/063 and H01S3/108) · CPC title
for pulse generation · CPC title
Amplitude control · CPC title
ytterbium · CPC title
Measuring the characteristics of individual optical pulses or of optical pulse trains · CPC title
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