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Отображаемые элементы 1-10 из 47254
Ultrabroadband red luminescence of Mn4+ in MgAl2O4 peaking at 651 nm
(2020-05)
of Mn
4+
in Spinel Peaking at 651 nm
Haipeng Ji,
1
Xinghui Hou,
1
Maxim S. Molokeev,
2,3
Jumpei Ueda,
4
Setsuhisa Tanabe,
4
Mikhail G.
Brik,
5,6
Zongtao Zhang,
1
Yu Wang,
1,*
Deliang Chen
1,*
1 School of Materials Science and Engineering...
, and the cation antisite-occupation, which finally lead to the first nearest coordination sphere (i.e., the MnO6 octahedrons) offsetting an average situation. Among them, the cation anti-site occupation (MgMg 𝑥 + AlAl 𝑥 → AlMg ▪ + MgAl ′ in Kröger...
, and the cation antisite-occupation, which finally lead to the first nearest coordination sphere (i.e., the MnO6 octahedrons) offsetting an average situation. Among them, the cation anti-site occupation (MgMg 𝑥 + AlAl 𝑥 → AlMg ▪ + MgAl ′ in Kröger...
Recoil-induced ultrafast molecular rotation probed by dynamical rotational Doppler effect
(2019-03)
. Ueda, Z. D. Pesic, I. Dumitriu,
and N. Berrah, Molecular-frame angular distribution of normal and resonant Auger electrons,
J. Phys.: Conf. Ser. 212, 012009 (2010).
29. R. Püttner, V. Sekushin, G. Kaindl, X.-J. Liu, H. Fukuzawa, K. Ueda, T. Tanaka, M...
photoelectron at the instant t = 0 the molecule rotates with the constant angular velocity, wk = α[k×R(0)]/I; note that we assume the angular velocity w = 0 prior to photoionization, i.e. 2 | www.pnas.org/cgi/doi/10.1073/pnas.XXXXXXXXXX Céolin et al. DR AF T we...
photoelectron at the instant t = 0 the molecule rotates with the constant angular velocity, wk = α[k×R(0)]/I; note that we assume the angular velocity w = 0 prior to photoionization, i.e. 2 | www.pnas.org/cgi/doi/10.1073/pnas.XXXXXXXXXX Céolin et al. DR AF T we...
Recoil-induced dissociation in hard-x-ray photoionization
(2019-11)
. Tanaka,
M. Hoshino, H. Tanaka, and K. Ueda, J. Phys. B: At.
Mol. Opt. Phys. 39, 4801 (2006).
[6] K. Ueda, X.-J- Liu, G. Pru¨mper, T. Lischke, T. Tanaka,
M. Hoshimo, H. Tanaka, I. Minkov, V. Kimberg, and F.
Gel’mukhanov, Chem. Phys. 329, 329 (2006).
[7] K...
. Ueda, R. Pu¨ttner, N.A. Cherepkov, F. Gel’mukhanov, and M. Ehara, Eur. Phys. J. Special Topics 169, 95, 2009. [8] E. Kukk, T. D. Thomas, D. Ce´olin, S. Granroth, O. Travnikova, M. Berholts, T. Marchenko, R. Guillemin, L. Journel, I. Ismail, R. Pu...
. Ueda, R. Pu¨ttner, N.A. Cherepkov, F. Gel’mukhanov, and M. Ehara, Eur. Phys. J. Special Topics 169, 95, 2009. [8] E. Kukk, T. D. Thomas, D. Ce´olin, S. Granroth, O. Travnikova, M. Berholts, T. Marchenko, R. Guillemin, L. Journel, I. Ismail, R. Pu...
Crystal Structure and Magnetic Properties in Pyroxenes Li0.7Na0.3FeGe2O6
(Сибирский федеральный университет. Siberian Federal University., 2015-08)
.J.M.Isobe, E.Ninomiya, A.N.Vasiliev, Y.Ueda, NovelPhaseTransition inSpin-1/2Linear
Chain Systems: NaTiSi2O6 and LiTiSi2O6, J. Phys. Soс. Japan., 71(2002), 1423–1426.
[9] S.V.Streltsov, D.I. Khomskii, Electronic structure and magnetic properties of pyroxenes
(Li...
.Pietzonka, G.Amthauer, The magnetic structure of clinopyroxene-type LiFeGe2O6 and revised data on multiferroic LiFeSi2O6, J. Solid State Chem, 182(2009), 2374–2484. [3] A.N.Vasiliev, O.L.Ignatchik, A.N.Sokolov, Z.Hiroi, M.Isobe, Y.Ueda, Long-range magnetic...
.Pietzonka, G.Amthauer, The magnetic structure of clinopyroxene-type LiFeGe2O6 and revised data on multiferroic LiFeSi2O6, J. Solid State Chem, 182(2009), 2374–2484. [3] A.N.Vasiliev, O.L.Ignatchik, A.N.Sokolov, Z.Hiroi, M.Isobe, Y.Ueda, Long-range magnetic...
Approach to form planar structures based on epitaxial Fe1 − xSix films grown on Si(111)
(2017-11)
,
I.A. Tarasov, S.G. Ovchinnikov, Study of the structural and magnetic characteristics
of epitaxial Fe3Si/Si(111) films, JETP Lett. 99 (2014) 527–530.
[11] K. Hamaya, K. Ueda, Y. Kishi, Y. Ando, T. Sadoh, M. Miyao, Epitaxial ferromagnetic
Fe3Si...
on epitaxial Fe 1 − x Si x films grown on Si(111) A.S. Tarasov a,b , A.V. Lukyanenko a,b,⁎ , I.A. Tarasov a , I.A. Bondarev a,b , T.E. Smolyarova a,b , N.N. Kosyrev a , V.A. Komarov a,b , I.A. Yakovlev a , M.N. Volochaev a,c , L.A. Solovyov d , A...
on epitaxial Fe 1 − x Si x films grown on Si(111) A.S. Tarasov a,b , A.V. Lukyanenko a,b,⁎ , I.A. Tarasov a , I.A. Bondarev a,b , T.E. Smolyarova a,b , N.N. Kosyrev a , V.A. Komarov a,b , I.A. Yakovlev a , M.N. Volochaev a,c , L.A. Solovyov d , A...
Synthesis and Characterization of Structural, Thermodynamic, and Magnetic Properties of NaxLi1 – xFeGe2O6 (x = 0.1–0.9) Compounds
(2016-07)
. Ninomiya, A. N. Vasiliev, and Y. Ueda,
J. Phys. Soc. Jpn. 71, 1423 (2002).
6. I. Kim, B.-G. Jeon, D. Patil, S. Patil, G. Nénert,
K. H. Kim, J. Phys.: Condens. Matter 24, 306001
(2012).
7. C. M. Jantzen, Am. Mineral. 69, 277 (1984).
8. M. A. Carpenter...
this result can be obtained the most completely and easily in the numerical values by calculating the index of octahe- dron distortion using the formula D = (1/n)Σ(Li – ⟨L⟩)/⟨L⟩ [20], where Li is the distance from the central atom of polyhedron to i...
this result can be obtained the most completely and easily in the numerical values by calculating the index of octahe- dron distortion using the formula D = (1/n)Σ(Li – ⟨L⟩)/⟨L⟩ [20], where Li is the distance from the central atom of polyhedron to i...
Iron silicide-based ferromagnetic metal/semiconductor nanostructures
(2016-11)
–2281. © Pleiades Publishing, Ltd., 2016.
Original Russian Text © S.G. Ovchinnikov, S.N. Varnakov, S.A. Lyashchenko, I.A. Tarasov, I.A. Yakovlev, E.A. Popov, S.M. Zharkov, D.A. Velikanov, A.S. Tarasov, V.S. Zhandun,
N.G. Zamkova, 2016, published in Fizika Tverdogo...
Tela, 2016, Vol. 58, No. 11, pp. 2195–2199. Iron Silicide-Based Ferromagnetic Metal/Semiconductor Nanostructures S. G. Ovchinnikova, b, c, *, S. N. Varnakova, b, S. A. Lyashchenkob, I. A. Tarasova, b, I. A. Yakovlevb, E. A. Popov b, S. M. Zharkova, D. A...
Tela, 2016, Vol. 58, No. 11, pp. 2195–2199. Iron Silicide-Based Ferromagnetic Metal/Semiconductor Nanostructures S. G. Ovchinnikova, b, c, *, S. N. Varnakova, b, S. A. Lyashchenkob, I. A. Tarasova, b, I. A. Yakovlevb, E. A. Popov b, S. M. Zharkova, D. A...
Fabrication and DC/AC Characterization of 3-Terminal Ferromagnet/Silicon Spintronics Devices
(2018-12)
Fabrication and dc/ac characterization of 3-terminal ferromagnet/silicon
spintronics devices
A.S. Tarasov
1,2,*
, A.V. Lukyanenko
1,2
, I.A. Bondarev
1,2
, M.V. Rautskii
1
,
F.A Baron
1
, T.E. Smolyarova
1,2
, I.A. Yakovlev
1
, S.N. Varnakov
1
,
S...
Si contact to silicon wafer inferring the electrons’ spin precession [8, 9]. We believe that spin-dependent transport between Fe3Si and p-Si is realized by tunneling through the Schottky barrier. By measuring the I-V characteristics of fabricated...
Si contact to silicon wafer inferring the electrons’ spin precession [8, 9]. We believe that spin-dependent transport between Fe3Si and p-Si is realized by tunneling through the Schottky barrier. By measuring the I-V characteristics of fabricated...
Impact of enzyme stabilizers on the characteristics of biomodules for bioluminescent biosensors
(2018)
of Bi
a r t i c l
Article history:
Received 7 No
Received in re
Accepted 5 Fe
Available onlin
bios
mobi
f sev
the b
ers in
high a
ible
The g
strat
1. Introduction
Enzymes from bioluminescent systems are widely used in ana-
lytical studies from...
, Akademgorodok 50/50, Krasnoyarsk 660036, Russia e i n f o vember 2014 vised form 31 January 2015 bruary 2015 e 20 February 2015 a b s t r a c t The biomodule of bioluminescent oxidoreductase and luciferase, co-im developed. We studied...
, Akademgorodok 50/50, Krasnoyarsk 660036, Russia e i n f o vember 2014 vised form 31 January 2015 bruary 2015 e 20 February 2015 a b s t r a c t The biomodule of bioluminescent oxidoreductase and luciferase, co-im developed. We studied...
Изменчивость и эволюция фермента фосфолипаза А2 в яде ямкоголовых змей Старого Света
(Сибирский федеральный университет, 2019)
ɨɛɧɚɪɭɠɟɧɵ ɜ ɦɢɤɪɨɨɪɝɚɧɢɡɦɚɯ (ɧɚɩɪɢɦɟɪ, ɤɢɲɟɱɧɚɹ
ɩɚɥɨɱɤɚ (Escherichia coli)) [1]. Ɏɟɪɦɟɧɬɵ ɷɬɨɣ ɝɪɭɩɩɵ ɨɬɳɟɩɥɹɸɬ ɚɰɢɥɶɧɭɸ
ɰɟɩɶ ɮɨɫɮɨɥɢɩɢɞɚ ɜ sn-1 ɩɨɥɨɠɟɧɢɢ.
Ɋɢɫɭɧɨɤ 1 – ɋɬɪɭɤɬɭɪɚ ɮɨɫɮɨɥɢɩɚɡ: Ⱥ - Ʉɪɢɫɬɚɥɥɢɱɟɫɤɚɹ ɫɬɪɭɤɬɭɪɚ Ɏɨɫɮɨɥɢɩɚɡɵ
Ⱥ1. Lee, I. 2011...
ɩɨɥɨɠɟɧɢɢ. Ɂɦɟɢɧɵɟ ɹɞɵ ɫɨɞɟɪɠɚɬ ɧɟɫɤɨɥɶɤɨ ɨɫɧɨɜɧɵɯ ɬɨɤɫɢɱɧɵɯ ɤɨɦɩɨɧɟɧɬɨɜ, ɤɚɠɞɵɣ ɢɡ ɤɨɬɨɪɵɯ ɢɦɟɸɬ ɫɜɨɢ ɢɡɨɮɨɪɦɵ [3]. ɇɚ ɨɫɧɨɜɟ ɚɦɢɧɨɤɢɫɥɨɬɧɨɣ ɩɨɫɥɟɞɨɜɚɬɟɥɶɧɨɫɬɢ, ɬɪёɯɦɟɪɧɨɣ ɫɬɪɭɤɬɭɪɵ ɢ ɞɢɫɭɥɶɮɢɞɧɨɝɨ ɫɤɥɟɢɜɚɧɢɹ ɮɟɪɦɟɧɬɵ ɷɬɨɣ ɝɪɭɩɩɵ ɪɚɡɞɟɥɹɸɬ ɧɚ I ɢ II...
ɩɨɥɨɠɟɧɢɢ. Ɂɦɟɢɧɵɟ ɹɞɵ ɫɨɞɟɪɠɚɬ ɧɟɫɤɨɥɶɤɨ ɨɫɧɨɜɧɵɯ ɬɨɤɫɢɱɧɵɯ ɤɨɦɩɨɧɟɧɬɨɜ, ɤɚɠɞɵɣ ɢɡ ɤɨɬɨɪɵɯ ɢɦɟɸɬ ɫɜɨɢ ɢɡɨɮɨɪɦɵ [3]. ɇɚ ɨɫɧɨɜɟ ɚɦɢɧɨɤɢɫɥɨɬɧɨɣ ɩɨɫɥɟɞɨɜɚɬɟɥɶɧɨɫɬɢ, ɬɪёɯɦɟɪɧɨɣ ɫɬɪɭɤɬɭɪɵ ɢ ɞɢɫɭɥɶɮɢɞɧɨɝɨ ɫɤɥɟɢɜɚɧɢɹ ɮɟɪɦɟɧɬɵ ɷɬɨɣ ɝɪɭɩɩɵ ɪɚɡɞɟɥɹɸɬ ɧɚ I ɢ II...