Science, Volume 316John Michels (Journalist) Science Company, Moses King, 2007 A weekly record of scientific progress. |
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Page 266
... probe , 23 = 577.9 nm , FWHM ~ 0.7 nm , 0.5 μ ) per pulse . The integration time was 1 s per probe- delay step . 1E4 = 1 x 104 . λ1 = 712 nm 4000 λ = 712 nm 1000 1500 Table 1. The observed Raman peaks and their calculated absolute.
... probe , 23 = 577.9 nm , FWHM ~ 0.7 nm , 0.5 μ ) per pulse . The integration time was 1 s per probe- delay step . 1E4 = 1 x 104 . λ1 = 712 nm 4000 λ = 712 nm 1000 1500 Table 1. The observed Raman peaks and their calculated absolute.
Page 267
... probe it bandwidth . However , this is not an intrinsic limit , and much better resolution can be achieved by recording the anti - Stokes spectrum while varying the probe - pulse delay , if the measurements are not overwhelmed by the ...
... probe it bandwidth . However , this is not an intrinsic limit , and much better resolution can be achieved by recording the anti - Stokes spectrum while varying the probe - pulse delay , if the measurements are not overwhelmed by the ...
Page 268
... probe has been used in time- resolved CARS ( 19-22 ) . That technique uses ultrashort pulses for preparation and probing . Its ultimate source of species - specific information is multimode interference in the probe - delay signal ...
... probe has been used in time- resolved CARS ( 19-22 ) . That technique uses ultrashort pulses for preparation and probing . Its ultimate source of species - specific information is multimode interference in the probe - delay signal ...
Contents
R Seager et al A kinase phosphorylates the inositol pyrophosphate IP to generate IP and | 17 |
NEWS OF THE WEEK | 30 |
Indonesia to Share Flu Samples Under New Terms | 37 |
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