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Dive into the research topics where Dmitrii A. Varshalovich is active.

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Featured researches published by Dmitrii A. Varshalovich.


Astronomy Reports | 2015

H 2 /HD molecular clouds in the early universe. An independent means of estimating the baryon density of the universe

A. V. Ivanchik; S. A. Balashev; Dmitrii A. Varshalovich; V. V. Klimenko

Areview ofmolecular hydrogen H2 absorption systems identified in quasar spectra is presented. The analysis of such systems allows the determination of the chemical composition of the interstellar medium and the physical conditions existing in the early Universe, about 10–12 billioin years ago. To date, 27 molecular hydrogen systems have been found, nine of which show HD lines. An independent method for estimating the baryon density of the Universe is described, and is based on the analysis of the relative abundances of H2 and HD molecules. Among known H2/HD systems, only the two systems detected in Q1232+082 and Q0812+320 quasar spectra satisfy the condition of self-shielding of the absorbing cloud log


Physics-Uspekhi | 1993

Check of the constancy of the fundamental constants over cosmological time

Dmitrii A. Varshalovich; Sergei A. Levshakov; A. Yu. Potekhin

N_{H_2 HD} \underset{\raise0.3em\hbox{


Physics-Uspekhi | 1971

SPIN STATES OF ATOMS AND MOLECULES IN THE COSMIC MEDIUM

Dmitrii A. Varshalovich

\smash{\scriptscriptstyle\thicksim}


Physics-Uspekhi | 2010

Big Bang nucleosynthesis of deuterium and HD/H 2 molecular abundances in interstellar clouds of 12 Gyr ago

Dmitrii A. Varshalovich; Aleksandr V Ivanchik; Sergei A Balashev; P Petitjean

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Physics-Uspekhi | 2006

Annihilation emission from the galactic center: the INTEGRAL observatory results

E. Churazov; R. Sunyaev; S. Yu. Sazonov; M. Revnivtsev; Dmitrii A. Varshalovich

. Under these conditions the local molecular fraction can reach unity, making it possible to estimate the relative deuterium abundance D/H using the ratio of the HD and H2 column densities N(HD)/2N(H2). The analysis of the column densities for these two systems yields D/H = HD/2H2 = (3.26 ± 0.29) × 10−5. Comparison of this result with the prediction of BBN theory for D/H enables the determination of the baryon density of the Universe: Ωbh2 = (0.0194 ± 0.0011). This is somewhat lower than the values Ωbh2 = (0.0224 ± 0.0012) and (0.0221 ± 0.0003) obtained using other independent methods: (i) analysis of the relative D and H abundances in Lyman Limit Systems at high redshifts, and (ii) analysis of the anisotropy of the cosmic microwave background. Nevertheless, all three values agree within their 2σ errors.


Physics-Uspekhi | 2006

Joint scientific session of the Physical Sciences Division of the Russian Academy of Sciences and the Joint Physical Society of the Russian Federation (30 November 2005)

Vladimir D. Kuznetsov; V. V. Zaitsev; Aleksandr V. Stepanov; E. Churazov; R. Sunyaev; S. Yu. Sazonov; M. Revnivtsev; Dmitrii A. Varshalovich; S. N. Fabrika; Pavel Abolmasov; Sergey Karpov; O.N. Sholukhova; Kajal K. Ghosh


Physics-Uspekhi | 1971

Reviews of Topical Problems: Spin States of Atoms and Molecules in the Cosmic Medium

Dmitrii A. Varshalovich


Physics-Uspekhi | 2006

Evgenii Borisovich Aleksandrov (on his seventieth birthday)

Zhores I. Alferov; Aleksandr F. Andreev; S.N. Bagaev; V.B. Belyanin; Dmitrii A. Varshalovich; Vitalii L. Ginzburg; Andrei Georgievich Zabrodskii; Valerii S. Zapasskii; Aleksandr Aleksandrovich Kaplyanskii; V. I. Perel; Nikolai N. Rozanov; Robert A. Suris


Physics-Uspekhi | 2003

In memory of Oleg Igorevich Sumbaev

Zhores I. Alferov; Dmitrii A. Varshalovich; Aleksei A. Vorob'ev; Kir A. Konoplev; Vladimir M. Lobashev; E. Mazets; Vladimir A. Nazarenko; Gennadii A. Petrov; Yurii V. Petrov; A. P. Serebrov; Aleksandr N Skrinskiĭ; Valery V Fedorov


Physics-Uspekhi | 1971

Quantum Theory of the Modulation of the Electron Beam at Optical Frequencies

Dmitrii A. Varshalovich; M. I. D'Yakonov

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Zhores I. Alferov

Russian Academy of Sciences

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E. Churazov

Russian Academy of Sciences

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E. Mazets

Russian Academy of Sciences

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Evgenii B. Aleksandrov

Vavilov State Optical Institute

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Rashid A. Syunyaev

Russian Academy of Sciences

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