CNT – enhanced Raman spectroscopy and its application: DNA detection and cell visualizationEgorov, A. E.,
Egorova, V. P.,
Grushevskaya, H. V.,
Krylova, N. G.,
Lipnevich, I. V.,
Orekhovskaya, T. I.,
Shulitsky, B. G. We have experimentally observed an enhancement of
Raman scattering on surface plasmons in Si coated
Nanopatterning and tuning of optical taper antenna apex for tip-enhanced Raman scattering performance analysis for preparing highly reproducible tip-enhanced
Raman scattering (TERS) conical gold tips with dc
Phospholipid detection by surface enhanced Raman scattering using silvered porous silicon substratesArzumanyan, G. M.,
Doroshkevich, N.,
Mamatkulov, K.,
Shashkov, S.,
Girel, K. V.,
Bandarenka, H. V.,
Borisenko, V. E.,
Гирель, К. В.,
Бондаренко, А. В.,
Борисенко, В. Е. silicon to form substrates appropriate for the detection of organic molecules by surface-enhanced
Raman Low temperature phase transition in ZnSe doped with nickelSokolov, V. I.,
Dubinin, S. F.,
Teploukhov, S. G.,
Parkhomenko, V. D.,
Lonchakov, A. T.,
Gudkov, V. V.,
Tkach, A. V.,
Zhevstovskikh, I. V.,
Gruzdev, N. B. dimensional impurity of an extremely low concentration. Experiments on elastic
scattering of thermal neutrons
Characterization of an UO2 ceramic via Raman imaging and electron back-scattering diffractionIltis, Xavière,
Desgranges, Lionel,
Ammar, Mohamed Ramzi,
Genevois, Cécile,
Bilbao, Emmanuel de,
Canizarès, Aurélien,
Barannikova, Svetlana A.,
Leontyev, Igor N.,
Simon, Patrick,
Maslova, Olga A. Raman image, electron back-
scattering diffraction (EBSD) measurements are carried out. EBSD data allow a
Multiwavelength excitation Raman scattering of Cu2ZnSn1-xGex(S,Se)4 solid solution in single crystals for band gap engineering and earth abundant photovoltaic applicationGarcia-Llamas, E.,
Guc, M.,
Bodnar, I. V.,
Fontane, X.,
Caballero, R.,
Merino, J. M.,
Leon, M.,
Izquierdo-Roca, V.,
Бондарь, И. В. spectra. The analysis has been performed by using
Raman scattering excited with different wavelengths
Resonant Raman scattering of anthracene-based carbons in the secondary carbonization stage)
Raman process. In the present work, resonant
Raman scattering (lines ranging from 1.58 to 3.81 e