KALINICHEV, A.A.,
KUROCHKIN, M.A.,
KOLOMYTSEV, A.Y.,
KOLESNIKOV, I.E.,
KHASBIEVA, R.S.,
KOLESNIKOV, E.Y.,
LÄHDERANTA, E. (2019) was designed
based on the temperature dependent fluorescence intensity ratios of thermally (2H11/2 and 4S3
into effect.
The relevance of the
problem under study is determined by the fact that in light of the adopted
YB 3+ /ER 3+− CODOPED GEO 2 –PBO–PBF 2 GLASS CERAMICS FOR RATIOMETRIC UPCONVERSION TEMPERATURE SENSING BASED ON THERMALLY AND NON-THERMALLY COUPLED LEVELSKalinichev, A.A.,
Kurochkin, M.A.,
Kolomytsev, A.Y.,
Khasbieva, R.S.,
Kolesnikov, E.Y.,
Lähderanta, E.,
Kolesnikov, I.E. (2019) . The thermal sensing was designed
based on the temperature dependent fluorescence intensity ratios of thermally
problem. Currently, new methods of early diagnosis of
the disease are being developed, before
SOKOLOV, S.V.,
NIKOLAEVA, I.E.,
PLECHEV, V.V.,
OLEYNIK, B.A.,
DMITRIEV, I.V.,
BUZAEV, I.V. (2019) . The
problem of malposition of stents can lead to such complications as stent thrombosis in the intra