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Materials Science

D-Index
69
Citations
17222
World Ranking
4640
National Ranking
10

Overview

A. A. Kaminskii was affiliated with the Russian Academy of Sciences in the Russian Federation. Their research primarily focused on topics related to additive technologies and the challenges associated with patenting scientific and technical developments within this field.

The scientist contributed to the program of Interexpo GEO-Siberia, a venue where their recent works were published. Their papers included detailed analyses of market trends and patenting issues in additive technologies, reflecting a focus on both technological innovation and its legal aspects.

  • Анализ трендов рынков аддитивных технологий, 2023, Interexpo GEO-Siberia
  • Анализ проблем патентования научно-технических разработок в сфере аддитивных технологий, 2024, Interexpo GEO-Siberia

Collaboration was evident in Kaminskii's research, with frequent coauthorship by M. I. Ananich, with whom they worked on at least two publications. Their joint work suggests a collaborative effort in advancing the understanding of additive technologies and related fields.

  • M. I. Ananich (2 coauthored papers)

The publication venue associated with their most recent contributions, Interexpo GEO-Siberia, hosted both of their known recent papers. This indicates a consistent engagement with this scientific community and possibly a focus on regional industry and technological trends as captured by this event.

  • Interexpo GEO-Siberia (2 publications)

Kaminskii's research topics revolved around additive technologies, with emphasis on market dynamics and the intellectual property concerns related to technological development in this area. The timeline of their activity extended at least from 2023 to 2024, capturing current challenges in the evolving field of additive manufacturing.

A. A. Kaminskii has passed away. The available data does not contain information about awards or book publications related to their work.

Best Publications

  • Neodymium doped yttrium aluminum garnet (Y3Al5O12) nanocrystalline ceramics—a new generation of solid state laser and optical materials

    Jianren Lu;Ken-ichi Ueda;Hideki Yagi;Takagimi Yanagitani

  • Optical properties and highly efficient laser oscillation of Nd:YAG ceramics

    J. Lu;M. Prabhu;J. Song;C. Li

  • Properties of Nd3+-doped and undoped tetragonal PbWO4, NaY(WO4)2, CaWO4, and undoped monoclinic ZnWO4 and CdWO4 as laser-active and stimulated raman scattering-active crystals.

    Alexander A. Kaminskii;Hans J. Eichler;Ken-ichi Ueda;Nikolai V. Klassen

  • Highly efficient 2% Nd:yttrium aluminum garnet ceramic laser

    Jianren Lu;Mahendra Prabhu;Jianqiu Xu;Ken-ichi Ueda

  • Nd3+:Y2O3 Ceramic Laser

    Jianren Lu;Junhua Lu;Tomoyo Murai;Kazunori Takaichi

  • Promising ceramic laser material: Highly transparent Nd3+:Lu2O3 ceramic

    J. Lu;K. Takaichi;T. Uematsu;A. Shirakawa

  • Investigation of trigonal (La1−xNdx)3Ga5SiO14 crystals. I. Growth and optical Properties

    A. A. Kaminskii;B. V. Mill;G. G. Khodzhabagyan;A. F. Konstantinova

  • 72 W Nd:Y3Al5O12 ceramic laser

    Jianren Lu;T. Murai;K. Takaichi;T. Uematsu

  • Investigation of trigonal (La1−xNdx)3Ga5SiO14 crystals. II. Spectral laser and electromechanical properties

    A. A. Kaminskii;I. M. Silvestrova;S. E. Sarkisov;G. A. Denisenko

  • Characterizations and laser performances of highly transparent Nd3+:Y3Al5O12 laser ceramics

    Hideki Yagi;Takagimi Yanagitani;Kazunori Takaichi;Ken-ichi Ueda

  • High efficiency nanosecond Raman lasers based on tetragonal PbWO4 crystals

    A.A Kaminskii;C.L McCray;H.R Lee;S.W Lee

  • Dependence of the Line Strength of f–f Transitions on the Manifold Energy. II. Analysis of Pr3+ in KPrP4O12

    A. A. Kornienko;A. A. Kaminskii;E. B. Dunina

  • Yb3+:Y2O3 Ceramics – a Novel Solid-State Laser Material

    Jianren Lu;Kazunori Takaichi;Tomohiro Uematsu;Akira Shirakawa

  • Yb3+:Sc2O3 ceramic laser

    J. Lu;J. F. Bisson;K. Takaichi;T. Uematsu

  • 110 W ceramic Nd3+ : Y3Al5O12 laser

    J. Lu;H. Yagi;K. Takaichi;T. Uematsu

  • Pure and Nd3+-doped Ca3Ga2Ge4O14 and Sr3Ga2Ge4O14 single crystals, their structure, optical, spectral luminescence, electromechanical properties, and stimulated emission

    A. A. Kaminskii;E. L. Belokoneva;B. V. Mill;Yu. V. Pisarevskii

  • Diode-pumped mode-locked Yb3+:Y2O3 ceramic laser.

    A. Shirakawa;K. Takaichi;H. Yagi;J. F. Bisson

  • Composite Yb:YAG/Cr 4+ :YAG ceramics picosecond microchip lasers

    Jun Dong;Ken-ichi Ueda;Akira Shirakawa;Hideki Yagi

  • Microhardness and fracture toughness of Y2O3-and Y3Al5O12-based nanocrystalline laser ceramics

    A. A. Kaminskii;M. Sh. Akchurin;R. V. Gainutdinov;K. Takaichi

  • Spectroscopy of a new laser garnet Lu3Sc2Ga3O12:Nd3+. Intensity luminescence characteristics, stimulated emission, and full set of squared reduced‐matrix elements |〈‖U(t)‖〉|2 for Nd3+ ions

    A. A. Kaminskii;G. Boulon;M. Buoncristiani;B. Di Bartolo

  • Laser-diode pumped heavy-doped Yb : YAG ceramic lasers

    Jun Dong;Akira Shirakawa;Ken-ichi Ueda;Hideki Yagi

Frequent Co-Authors

Ken-ichi Ueda
Ken-ichi Ueda University of Electro-Communications
Akira Shirakawa
Akira Shirakawa University of Electro-Communications
Jerzy Hanuza
Jerzy Hanuza Polish Academy of Sciences
Hideki Yagi
Hideki Yagi University of Electro-Communications
Daniel Jaque
Daniel Jaque Autonomous University of Madrid
J. García Solé
J. García Solé Autonomous University of Madrid
Dingyuan Tang
Dingyuan Tang Nanyang Technological University
Georges Boulon
Georges Boulon Claude Bernard University Lyon 1
Rolindes Balda
Rolindes Balda University of the Basque Country
Marco Bettinelli
Marco Bettinelli University of Verona

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Best Scientists Citing A. A. Kaminskii