D-Index & Metrics Best Publications

D-Index & Metrics

Discipline name D-index D-index (Discipline H-index) only includes papers and citation values for an examined discipline in contrast to General H-index which accounts for publications across all disciplines. Citations Publications World Ranking National Ranking
Physics D-index 82 Citations 23,179 387 World Ranking 2128 National Ranking 8

Overview

What is he best known for?

The fields of study he is best known for:

  • Quantum mechanics
  • Astrophysics
  • Astronomy

His main research concerns Astrophysics, Neutron star, Spectral line, Astronomy and Observatory. Juri Poutanen regularly ties together related areas like Radius in his Astrophysics studies. His Neutron star research incorporates themes from Amplitude, X-ray, Scattering and Thermonuclear fusion.

His Spectral line course of study focuses on Accretion and Pair production. His research in Astronomy intersects with topics in Polarimetry and Detector. Juri Poutanen interconnects Galaxy, Astroparticle physics, Cherenkov Telescope Array and High-energy astronomy in the investigation of issues within Observatory.

His most cited work include:

  • Introducing the CTA concept (533 citations)
  • The Two-Phase Pair Corona Model for Active Galactic Nuclei and X-Ray Binaries: How to Obtain Exact Solutions (414 citations)
  • Supercritically accreting stellar mass black holes as ultraluminous X-ray sources (410 citations)

What are the main themes of his work throughout his whole career to date?

Juri Poutanen mainly investigates Astrophysics, Neutron star, Astronomy, Spectral line and Accretion. Juri Poutanen has included themes like X-ray and Compton scattering in his Astrophysics study. His study explores the link between Neutron star and topics such as Radius that cross with problems in Photosphere and Black-body radiation.

His study in Astronomy is interdisciplinary in nature, drawing from both Gamma ray and Blazar. His Spectral line research includes themes of Flux, Line, Opacity, Amplitude and Black hole. His Accretion study incorporates themes from Plasma and Accretion disc.

He most often published in these fields:

  • Astrophysics (119.34%)
  • Neutron star (51.90%)
  • Astronomy (37.52%)

What were the highlights of his more recent work (between 2018-2021)?

  • Astrophysics (119.34%)
  • Neutron star (51.90%)
  • Pulsar (33.55%)

In recent papers he was focusing on the following fields of study:

Juri Poutanen mainly focuses on Astrophysics, Neutron star, Pulsar, Accretion and Polarimetry. His study connects Spectral line and Astrophysics. The various areas that Juri Poutanen examines in his Neutron star study include Compton scattering, Radius, Computational physics and Rotation.

His Pulsar study deals with Eddington luminosity intersecting with Monte Carlo method. The Accretion study combines topics in areas such as Magnetosphere, Angular momentum and Advection. In his research on the topic of Polarimetry, Silence and Launched is strongly related with Astronomy.

Between 2018 and 2021, his most popular works were:

  • Dense matter with eXTP (73 citations)
  • Dense matter with eXTP (73 citations)
  • Monte Carlo studies for the optimisation of the Cherenkov Telescope Array layout (22 citations)

In his most recent research, the most cited papers focused on:

  • Quantum mechanics
  • Astronomy
  • Astrophysics

His scientific interests lie mostly in Astrophysics, Pulsar, Neutron star, Accretion and X-ray pulsar. His research on Astrophysics often connects related areas such as Polarization. His biological study spans a wide range of topics, including Spectral line, Radiative transfer and Limb darkening.

His Neutron star research is multidisciplinary, relying on both Polarimetry, Compton scattering, Radius, Schwarzschild metric and Rotation. His Accretion study integrates concerns from other disciplines, such as Accretion disc and Emission spectrum. His X-ray pulsar research incorporates elements of Luminosity and Cyclotron.

This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.

Best Publications

Introducing the CTA concept

B. S. Acharya;M. Actis;T. Aghajani;G. Agnetta.
Astroparticle Physics (2013)

726 Citations

The Two-Phase Pair Corona Model for Active Galactic Nuclei and X-Ray Binaries: How to Obtain Exact Solutions

Juri Poutanen;Roland Svensson.
The Astrophysical Journal (1996)

633 Citations

Super-critically accreting stellar-mass black holes as ultraluminous X-ray sources

Juri Poutanen;Galina Lipunova;Sergei Fabrika;Alexey G. Butkevich.
arXiv: Astrophysics (2006)

620 Citations

Radiation mechanisms and geometry of Cygnus X-1 in the soft state

M. Gierlinski;A. A. Zdziarski;J. Poutanen;P. S. Coppi.
arXiv: Astrophysics (1999)

602 Citations

Supercritically accreting stellar mass black holes as ultraluminous X-ray sources

Juri Poutanen;Juri Poutanen;Galina Lipunova;Sergei Fabrika;Alexey G. Butkevich;Alexey G. Butkevich.
Monthly Notices of the Royal Astronomical Society (2007)

564 Citations

Radiation mechanisms and geometry of cygnus X-1 in the soft state

Marek Gierliński;Andrzej A. Zdziarski;Juri Poutanen;Paolo S. Coppi.
Monthly Notices of the Royal Astronomical Society (1999)

520 Citations

The major upgrade of the MAGIC telescopes, Part II: A performance study using observations of the Crab Nebula

J. Aleksić;S. Ansoldi;L.A. Antonelli;P. Antoranz.
Astroparticle Physics (2016)

412 Citations

High Energy Processes in Accreting Black Holes

Juri Poutanen;Roland Svensson.
High Energy Processes in Accreting Black Holes (1999)

334 Citations

Limits to dark matter annihilation cross-section from a combined analysis of MAGIC and Fermi-LAT observations of dwarf satellite galaxies

M. L. Ahnen;S. Ansoldi;L. A. Antonelli;P. Antoranz.
arXiv: High Energy Astrophysical Phenomena (2016)

333 Citations

Spectral evolution of magnetic flares and time lags in accreting black hole sources

Juri Poutanen;Andrew C. Fabian.
Monthly Notices of the Royal Astronomical Society (1999)

302 Citations

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