Optical pulse compression to 3.4 fs in the monocycle region by feedback phase compensation

K Yamane, Z Zhang, K Oka, R Morita, M Yamashita… - Optics Letters, 2003 - opg.optica.org
We compensated for chirp of optical pulses with an over-one-octave bandwidth (495–1090
nm; center wavelength of 655.4 nm) produced by self-phase modulation in a single argon …

[PDF][PDF] Optical pulse compression to 3.4 fs in the monocycle region by feedback phase compensation

K Yamane, Z Zhang, K Oka, R Morita, M Yamashita… - Optics Letters - Citeseer
We compensated for chirp of optical pulses with an over-one-octave bandwidth (495–1090
nm; center wavelength of 655.4 nm) produced by self-phase modulation in a single argon …

[PDF][PDF] Optical pulse compression to 3.4 fs in the monocycle region by feedback phase compensation

K Yamane, Z Zhang, K Oka, R Morita, M Yamashita… - Optics Letters - scholar.archive.org
We compensated for chirp of optical pulses with an over-one-octave bandwidth (495–1090
nm; center wavelength of 655.4 nm) produced by self-phase modulation in a single argon …

Optical pulse compression to 3.4 fs in the monocycle region by feedback phase compensation

K Yamane, Z Zhang, K Oka, R Morita, M Yamashita… - opg.optica.org
We compensated for chirp of optical pulses with an over-one-octave bandwidth (495–1090
nm; center wavelength of 655.4 nm) produced by self-phase modulation in a single argon …

Optical pulse compression to 3.4 fs in the monocycle region by feedback phase compensation

K Yamane, Z Zhang, K Oka, R Morita… - Optics …, 2003 - pubmed.ncbi.nlm.nih.gov
We compensated for chirp of optical pulses with an over-one-octave bandwidth (495-1090
nm; center wavelength of 655.4 nm) produced by self-phase modulation in a single argon …

Optical pulse compression to 3.4 fs in the monocycle region by feedback phase compensation.

K Yamane, Z Zhang, K Oka, R Morita, M Yamashita… - Optics Letters, 2003 - europepmc.org
We compensated for chirp of optical pulses with an over-one-octave bandwidth (495-1090
nm; center wavelength of 655.4 nm) produced by self-phase modulation in a single argon …

Optical pulse compression to 3.4 fs in the monocycle region by feedback phase compensation

K Yamane, Z Zhang, K Oka, R Morita, M Yamashita… - Optics Letters, 2003 - cir.nii.ac.jp
抄録 We compensated for chirp of optical pulses with an over-one-octave bandwidth (495-
1090 nm; center wave-length of 655.4 nm) produced by self-phase modulation in a single …

[引用][C] Optical pulse compression to 3.4 fs in the monocycle region by feedback phase compensation

K Yamane, Z Zhang, K Oka, R Morita… - Optics …, 2003 - ui.adsabs.harvard.edu
Optical pulse compression to 3.4 fs in the monocycle region by feedback phase
compensation - NASA/ADS Now on home page ads icon ads Enable full ADS view NASA/ADS …

[PDF][PDF] Optical pulse compression to 3.4 fs in the monocycle region by feedback phase compensation

K Yamane, Z Zhang, K Oka, R Morita, M Yamashita… - Optics Letters - researchgate.net
We compensated for chirp of optical pulses with an over-one-octave bandwidth (495–1090
nm; center wavelength of 655.4 nm) produced by self-phase modulation in a single argon …

Optical pulse compression to 3.4 fs in the monocycle region by feedback phase compensation

K Yamane, Z Zhang, K Oka, R Morita… - Optics …, 2003 - eprints.lib.hokudai.ac.jp
We compensated for chirp of optical pulses with an over-one-octave bandwidth (495-1090
nm; center wave-length of 655.4 nm) produced by self-phase modulation in a single argon …