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6篇 您的检索式:作者名="PIATKOWSKI B"
    题名 作者 年代 出处 被引量
1Measurement of post rumen digestibility of crude protein by the technique in cows 显示文摘Voigt J B Piatkowski E H 1985Arch Tieremahr1985,35,:1
2Effect of ammonium chloride in rations on ammo?nia and urea concentration in rumen liquor and blood and on acid -base bal?ance and milk yield of cows显示文摘Piatkowski B Voigt J 1975Archiv fur Tierzucht1975,18,1:1
3Effect of the p H value when treating concentrateprotein with formaldehyde on protein protection inthe rumen显示文摘SCHNHUSEN U VOIGT J PIATKOWSKI B 1986Archives of Animal Nutrition1986,36,8:1
4Measurement of the postruminal digestibility of crude protein by the bag technique in cows显示文摘Voigt D S J Piatkowski P D S B Engelmann D H 1985Archives of Animal Nutrition1985,35,8:1
5GaAs on Si:towards a low -temperature 'smart-cut' technology显示文摘Gawlik G Jagielski J Piatkowski B 2003Vacuum2003,70,23:1
6Phase control of femtosecond pulses on the nanoscale using second harmonic nanoparticles显示文摘Investigations of ultrafast processes occurring on the nanoscale require a combination of femtosecond pulses and nanometer spatial resolution.However,controlling femtosecond pulses with nanometer accuracy is very challenging,as the limitations imposed both by dispersive optics on the time duration of a pulse and by the spatial diffraction limit on the focusing of light must be overcome simultaneously.In this paper,we provide a universal method that allows full femtosecond pulse control in subdiffraction-limited areas.We achieve this aim by exploiting the intrinsic coherence of the second harmonic emission from a single nonlinear nanoparticle of deep subwavelength dimensions.The method is proven to be highly sensitive,easy to use,quick,robust and versatile.This approach allows measurements of minimal phase distortions and the delivery of tunable higher harmonic light in a nanometric volume.Moreover,the method is shown to be compatible with a wide range of particle sizes,shapes and materials,allowing easy optimization for any given sample.This method will facilitate the investigation of light–matter interactions on the femtosecond–nanometer level in various areas of scientific study.Nicolo Accanto Jana B Nieder Lukasz Piatkowski Marta Castro-Lopez Francesco Pastorelli Daan Brinks Niek F van Hulst 2014Light(Science & Applications)2014,3,1:0
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