Zobrazeno 1 - 10
of 25
pro vyhledávání: '"D. O. Tolmachev"'
Autor:
D. Simin, V. A. Soltamov, A. V. Poshakinskiy, A. N. Anisimov, R. A. Babunts, D. O. Tolmachev, E. N. Mokhov, M. Trupke, S. A. Tarasenko, A. Sperlich, P. G. Baranov, V. Dyakonov, G. V. Astakhov
Publikováno v:
Physical Review X, Vol 6, Iss 3, p 031014 (2016)
We uncover the fine structure of a silicon vacancy in isotopically purified silicon carbide (4H-^{28}SiC) and reveal not yet considered terms in the spin Hamiltonian, originated from the trigonal pyramidal symmetry of this spin-3/2 color center. Thes
Externí odkaz:
https://doaj.org/article/0f84200643cd43538a74f1af952ab49c
Autor:
Yu. A. Uspenskaya, D. O. Tolmachev, R. A. Babunts, N. G. Romanov, Pavel G. Baranov, A. S. Gurin, H. R. Asatryan, A. G. Badalyan
Publikováno v:
Technical Physics Letters. 46:454-457
A high-frequency electron paramagnetic resonance spectrometer with frequency modulation has been developed. Advantages of the applied method for recording spectra of paramagnetic centers with giant fine-structure splittings are demonstrated by the ex
Autor:
T. Słupinski, D. O. Tolmachev, T. S. Shamirzaev, Manfred Bayer, V. Yu. Ivanov, Dmitri R. Yakovlev
Publikováno v:
Physical Review B. 104
Autor:
Herfried Wieczorek, E. V. Edinach, H. R. Asatryan, Pavel G. Baranov, D. O. Tolmachev, A. G. Petrosyan, A. S. Gurin, N. G. Romanov, Cees Ronda, A. G. Badalyan, Yu. A. Uspenskaya
Publikováno v:
Applied Magnetic Resonance. 47:737-744
Electron paramagnetic resonance (EPR) in the ground state of Gd3+ ions in (LuGd)3 Al5O12 single crystals has been found by monitoring the Ce3+ photoluminescence intensity under circularly polarized excitation in the presence of the 35 GHz microwave f
An optical quantum magnetometer with submicron resolution based on the level anticrossing phenomenon
Autor:
Pavel G. Baranov, Vladimir Dyakonov, D. O. Tolmachev, I. V. Il’in, R. A. Babunts, G. V. Astakhov, A. N. Anisimov, M. V. Muzafarova, V. A. Soltamov, E. N. Mokhov, A. P. Bundakova
Publikováno v:
Technical Physics Letters. 42:618-621
An optical quantum magnetometer with submicron spatial resolution is proposed that is based on the phenomenon of optical response in a solid-state spin system under conditions of spin sublevel anticrossing without using a resonance frequency. The sys
Autor:
B. R. Namozov, N. G. Romanov, A. S. Gurin, D. O. Tolmachev, G. Karczewski, Yu. G. Kusrayev, Pavel G. Baranov
Publikováno v:
JETP Letters. 102:230-234
Exchange-coupled complexes consisting of Mn ions and holes have been revealed by optically detected magnetic resonance in the narrowest quantum wells of asymmetrical multiple-quantum-well structures (CdMn)Te/(CdMg)Te. Calculations have been performed
Publikováno v:
Physics of the Solid State. 57:280-284
Long-lasting afterglow of ZnO single crystals grown by hydrothermal method has been studied using high-frequency (94 GHz) optically detected magnetic resonance (ODMR) at helium temperatures. Giant (up to 30%) afterglow intensity-detected electron par
Autor:
N. G. Romanov, Herfried Wieczorek, Pavel G. Baranov, A. G. Badalyan, D. O. Tolmachev, A. G. Petrosyan, A. S. Gurin, G. R. Asatryan, C. Ronda, Yu. A. Uspenskaya
Publikováno v:
Physical Review B. 95
Autor:
Yu.N. Makarov, Sergei Orlinskii, D. O. Tolmachev, Eugene N. Mokhov, P. G. Baranov, N. G. Romanov, Vladimir A. Khramtsov, Georgy Mamin, V. A. Soltamov, A. S. Gurin, Alexandra A. Soltamova, I. V. Ilyin
Publikováno v:
Applied Magnetic Resonance. 44:1139-1165
The results of studies of shallow donors and deep-level color centers in bulk AlN crystals are presented. Two shallow donors (presumably oxygen located on the nitrogen site and carbon located on the aluminum site) are suggested to exhibit the DX-rela
Autor:
N. G. Romanov, G. V. Mamin, V. A. Soltamov, Pavel G. Baranov, S.B. Orlinskii, I. V. Ilyin, E. N. Mokhov, A. S. Gurin, D. O. Tolmachev
Publikováno v:
physica status solidi c. 10:449-452
The results of pulse electron paramagnetic resonance (EPR), electron nuclear double resonance (ENDOR) and optically detected magnetic resonance (ODMR) are presented to show the electron structure of deep level defect color center in AlN single crysta