Two-color pump-probe system broadly tunable over the visible and the near infrared with sub-30fs temporal resolution

C Manzoni, D Polli, G Cerullo - Review of scientific instruments, 2006 - pubs.aip.org
Time-resolved optical spectroscopy is a powerful technique for the investigation of electronic
and vibrational dynamics in a variety of systems and provides unique information on …

Two-color pump-probe system broadly tunable over the visible and the near infrared with sub-30fs temporal resolution

C Manzoni, D Polli, G Cerullo - Review of Scientific Instruments, 2006 - cir.nii.ac.jp
抄録< jats: p> We describe an ultrafast spectroscopy system based on two synchronized
noncollinear optical parametric amplifiers (NOPAs). Each NOPA can be independently …

Two-color pump-probe system broadly tunable over the visible and the near infrared with sub-30 fs temporal resolution

C Manzoni, D Polli, G Cerullo - Review of Scientific …, 2006 - ui.adsabs.harvard.edu
We describe an ultrafast spectroscopy system based on two synchronized noncollinear
optical parametric amplifiers (NOPAs). Each NOPA can be independently configured to …

Two-color pump-probe system broadly tunable over the visible and the near infrared with sub-30fs temporal resolution

C Manzoni, D Polli, G Cerullo - Review of Scientific Instruments, 2006 - pubs.aip.org
We describe an ultrafast spectroscopy system based on two synchronized noncollinear
optical parametric amplifiers (NOPAs). Each NOPA can be independently configured to …

Two-color pump-probe system broadly tunable over the visible and the near infrared with sub-30 fs temporal resolution

C Manzoni, D Polli, GN Cerullo - REVIEW OF SCIENTIFIC …, 2006 - re.public.polimi.it
We describe an ultrafast spectroscopy system based on two synchronized noncollinear
optical parametric amplifiers (NOPAs). Each NOPA can be independently configured to …

[引用][C] Two-color pump-probe system broadly tunable over the visible and the near infrared with sub-30 fs temporal resolution

C MANZONI, D POLLI… - Review of scientific …, 2006 - American Institute of Physics