|
|
Publications in Math-Net.Ru |
Citations |
|
2022 |
1. |
M. V. Savelyev, A. D. Remzov, “Spatial and temporal characteristics of a four-wave radiation converter with due regard for Earth’s gravity field acting on nanoparticles dissolved in a transparent liquid”, Computer Optics, 46:4 (2022), 547–554 |
1
|
|
2018 |
2. |
V. V. Ivakhnik, M. V. Savelyev, “Transient four-wave mixing in a transparent two-component medium”, Computer Optics, 42:2 (2018), 227–235 |
4
|
|
2016 |
3. |
V. V. Ivakhnik, M. V. Savelyev, “Spatial selectivity of the four-wave radiation converter in a transparent two-component medium in a scheme with concurrent pump waves”, Computer Optics, 40:3 (2016), 322–330 |
1
|
4. |
V. V. Ivakhnik, M. V. Savelyev, “Influence of the pump wave rotation and divergence on the spatial selectivity of a four-wave radiation converter in a transparent two-component medium”, Computer Optics, 40:1 (2016), 19–25 |
2
|
|
2015 |
5. |
V. V. Ivakhnik, M. V. Savelyev, “Spatial and temporal characteristics of a nondegenerate four-wave radiation converter in a transparent medium based on electrostriction and Dufour effect”, Computer Optics, 39:4 (2015), 486–491 |
3
|
6. |
V. V. Ivakhnik, M. V. Savelyev, “The influence of the reflection coefficient on the spatial selectivity of a four-wave radiation converter in a transparent medium based on electrostriction and Dufour effect”, Computer Optics, 39:2 (2015), 197–203 |
2
|
|
2014 |
7. |
E. V. Vorob'eva, V. V. Ivakhnik, M. V. Savelyev, “Spatial and temporal characteristics of a four-wave radiation converter in a transparent medium based on electrostriction and Dufour effect”, Computer Optics, 38:2 (2014), 223–228 |
|
Organisations |
|
|
|
|