Publications of Valery V. Pipin


A list of publications authored or co-authored by Valery V. Pipin, derived from the SAO/NASA Astrophysics Data System (ADS). The number in brackets after each title indicates the number of citations that the paper has received.

Orcid ID: 0000-0001-9884-1147

List of publications ordered by citations
Number of papers: 95 (refereed: 78)
No. of citations: 1604
First author papers: 57 (refereed: 48)

2026

  1. Effects of Harmonic Magnetic Field Boundary Conditions in Mean-Field Solar Dynamo [1]
    Pipin, Valery, Solar Physics, 301, 24

2025

  1. Investigating Variations in Solar Differential Rotation by Helioseismology [2]
    Mandal, Krishnendu, Kosovichev, Alexander G., Pipin, Valery V. & Korzennik, Sylvain G., ApJ, 993, 71
  2. Helicity Fluxes and Hemispheric Helicity Rule of Active Regions Emerging from the Convection Zone Dynamo [2]
    Pipin, Valery V., Yang, Shangbin & Kosovichev, Alexander G., ApJ, 991, 88

2024

  1. Helioseismic Properties of Dynamo Waves in the Variation of Solar Differential Rotation [9]
    Mandal, Krishnendu, Kosovichev, Alexander G. & Pipin, Valery V., ApJ, 973, 36
  2. Solar Poloidal Magnetic Field Generation Rate from Observations and Mean-Field Dynamos [1]
    Pipin, Valery, Solar Physics, 299, 111
  3. On origin of active/inactive branches on moderate rotating solar analogs [0]
    Pipin, Valery V., Dynamics of Solar and Stellar Convection Zones and Atmospheres (Editors: Getling, Alexander V. & Kitchatinov, Leonid L.), IAU Symposium, 365, p. 174
  4. Toroidal Magnetic Flux Budget in Mean-field Dynamo Model of Solar Cycles 23 and 24 [5]
    Pipin, Valery V. & Kosovichev, Alexander G., ApJ, 962, 25

2023

  1. Spatio-temporal non-localities in a solar-like mean-field dynamo [6]
    Pipin, V. V., MNRAS, 522, 2919
  2. Effects of Emerging Bipolar Magnetic Regions in Mean-field Dynamo Model of Solar Cycles 23 and 24 [10]
    Pipin, V. V., Kosovichev, A. G. & Tomin, V. E., ApJ, 949, 7

2022

  1. On the effect of surface bipolar magnetic regions on the convection zone dynamo [11]
    Pipin, V. V., MNRAS, 514, 1522
  2. Synthetic solar cycle for active regions violating the Hale's polarity law [11]
    Zhukova, A., Khlystova, A., Abramenko, V. & Sokoloff, D., MNRAS, 512, 1365

2021

  1. Helioseismic Observations and Modeling of Solar Dynamo [0]
    Kosovichev, Alexander G., Getling, Alexander V. & Pipin, Valery V., The 20.5th Cambridge Workshop on Cool Stars, Stellar Systems, and the Sun (CS20.5), Cambridge Workshop on Cool Stars, Stellar Systems, and the Sun, p. 115
  2. Zonal harmonics of solar magnetic field for solar cycle forecast [7]
    Obridko, V. N., Sokoloff, D. D., Pipin, V. V., Shibalva, A. S. & Livshits, I. M., Journal of Atmospheric and Solar-Terrestrial Physics, 225, 105743
  3. Solar large-scale magnetic field and cycle patterns in solar dynamo [24]
    Obridko, V. N., Pipin, V. V., Sokoloff, D. & Shibalova, A. S., MNRAS, 504, 4990
  4. Long-term studies of photospheric magnetic fields on the Sun [23]
    Pevtsov, Alexei A., Bertello, Luca, Nagovitsyn, Yury A., Tlatov, Andrey G. & Pipin, Valery V., Journal of Space Weather and Space Climate, 11, 4
  5. Solar dynamo cycle variations with a rotational period [14]
    Pipin, V. V., MNRAS, 502, 2565
  6. Dynamo cycles on slow and fast rotating solar analogs [0]
    Pipin, Valery, The 20.5th Cambridge Workshop on Cool Stars, Stellar Systems, and the Sun (CS20.5), Cambridge Workshop on Cool Stars, Stellar Systems, and the Sun, p. 120
  7. The magnetic helicity density patterns from non-axisymmetric solar dynamo [4]
    Pipin, Valery V., Journal of Plasma Physics, 87, 775870101
  8. Forward Modeling Helioseismic Signatures of One- and Two-cell Meridional Circulation [9]
    Stejko, Andrey M., Kosovichev, Alexander G. & Pipin, Valery V., ApJ, 911, 90

2020

  1. Spectral characteristic of mid-term quasi-periodicities in sunspot data [19]
    Frick, P., Sokoloff, D., Stepanov, R., Pipin, V. & Usoskin, I., MNRAS, 491, 5572
  2. Torsional Oscillations in Dynamo Models with Fluctuations and Potential for Helioseismic Predictions of the Solar Cycles [18]
    Pipin, Valery V. & Kosovichev, Alexander G., ApJ, 900, 26
  3. Shape of solar cycles and mid-term solar activity oscillations [14]
    Sokoloff, D. D., Shibalova, A. S., Obridko, V. N. & Pipin, V. V., MNRAS, 497, 4376
  4. The origin and effect of hemispheric helicity imbalance in solar dynamo [3]
    Yang, Shangbin, Pipin, V. V., Sokoloff, D. D., Kuzanyan, K. M. & Zhang, Hongqi, Journal of Plasma Physics, 86, 775860302

2019

  1. Dynamo Wave Patterns inside of the Sun Revealed by Torsional Oscillations [36]
    Kosovichev, Alexander G. & Pipin, Valery V., ApJ, 871, L20
  2. On the Origin of Solar Torsional Oscillations and Extended Solar Cycle [38]
    Pipin, V. V. & Kosovichev, A. G., ApJ, 887, 215
  3. Evolution of Magnetic Helicity in Solar Cycle 24 [25]
    Pipin, Valery V., Pevtsov, Alexei A., Liu, Yang & Kosovichev, Alexander G., ApJ, 877, L36

2018

  1. Dynamo Wave Patterns Inside the Sun Revealed by Torsional Oscillations [0]
    Kosovichev, Alexander G. & Pipin, Valery V., arXiv:1809.10776
  2. Nonkinematic solar dynamo models with double-cell meridional circulation [12]
    Pipin, V. V., Journal of Atmospheric and Solar-Terrestrial Physics, 179, 185
  3. Large-scale magnetic fields and anomalies of chemical composition of stellar coronae [1]
    Pipin, V. V. & Tomozov, V. M., Journal of Atmospheric and Solar-Terrestrial Physics, 173, 28
  4. Does Nonaxisymmetric Dynamo Operate in the Sun? [13]
    Pipin, V. V. & Kosovichev, A. G., ApJ, 867, 145
  5. Generation of a Large-scale Magnetic Field in a Convective Full-sphere Cross-helicity Dynamo [13]
    Pipin, V. V. & Yokoi, N., ApJ, 859, 18
  6. On the Origin of the Double-cell Meridional Circulation in the Solar Convection Zone [16]
    Pipin, V. V. & Kosovichev, A. G., ApJ, 854, 67
  7. The Nature of Variations in Anomalies of the Chemical Composition of the Solar Corona with the 11-Year Cycle [3]
    Pipin, V. V. & Tomozov, V. M., Astronomy Reports, 62, 281

2017

  1. Non-linear regimes in mean-field full-sphere dynamo [21]
    Pipin, V. V., MNRAS, 466, 3007

2016

  1. Magnetic helicity in non-axisymmetric mean-field solar dynamo [0]
    Pipin, V. V., arXiv:1601.05184
  2. Dependence of Stellar Magnetic Activity Cycles on Rotational Period in a Nonlinear Solar-type Dynamo [12]
    Pipin, V. V. & Kosovichev, A. G., ApJ, 823, 133
  3. Angular momentum fluxes caused by Λ -effect and meridional circulation structure of the Sun [5]
    Pipin, Valery V. & Kosovichev, Alexander G., Advances in Space Research, 58, 1490
  4. A New Simple Dynamo Model for Stellar Activity Cycle [13]
    Yokoi, N., Schmitt, D., Pipin, V. & Hamba, F., ApJ, 824, 67

2015

  1. Dependence of magnetic cycle parameters on period of rotation in non-linear solar-type dynamos [13]
    Pipin, V. V., MNRAS, 451, 1528
  2. Effects of Large-scale Non-axisymmetric Perturbations in the Mean-field Solar Dynamo. [17]
    Pipin, V. V. & Kosovichev, A. G., ApJ, 813, 134
  3. Lithium 671-nm line at the polar and equatorial solar limbs [2]
    Teplitskaya, R. B., Ozhogina, O. A. & Pipin, V. V., Astronomy Letters, 41, 848

2014

  1. Magnetic Helicity of the Global Field in Solar Cycles 23 and 24 [19]
    Pipin, V. V. & Pevtsov, A. A., ApJ, 789, 21
  2. Effects of Anisotropies in Turbulent Magnetic Diffusion in Mean-field Solar Dynamo Models [15]
    Pipin, V. V. & Kosovichev, A. G., ApJ, 785, 49
  3. Reversals of the solar magnetic dipole in the light of observational data and simple dynamo models [10]
    Pipin, V. V., Moss, D., Sokoloff, D. & Hoeksema, J. T., A&A, 567, A90
  4. A review of Holocene solar-linked climatic variation on centennial to millennial timescales: Physical processes, interpretative frameworks and a new multiple cross-wavelet transform algorithm [105]
    Soon, Willie, Velasco Herrera, Victor M., Selvaraj, Kandasamy, Traversi, Rita, Usoskin, Ilya, Chen, Chen-Tung Arthur, Lou, Jiann-Yuh, Kao, Shuh-Ji, Carter, Robert M., Pipin, Valery, Severi, Mirko & Becagli, Silvia, Earth Science Reviews, 134, 1

2013

  1. Helioseismic Constraints and a Paradigm Shift in the Solar Dynamo [8]
    Kosovichev, Alexander G., Pipin, Valery V. & Zhao, J., Progress in Physics of the Sun and Stars: A New Era in Helio- and Asteroseismology (Editors: Shibahashi, H. & Lynas-Gray, A. E.), Astronomical Society of the Pacific Conference Series, 479, p. 395
  2. Waldmeier relations and the solar cycle dynamics by the mean-field dynamos [4]
    Pipin, V. V., Sokoloff, D. D. & Usoskin, I. G., Solar and Astrophysical Dynamos and Magnetic Activity (Editors: Kosovichev, Alexander G., de Gouveia Dal Pino, Elisabete & Yan, Yihua), IAU Symposium, 294, p. 595
  3. Advances in mean-field dynamo theories [7]
    Pipin, V. V., Solar and Astrophysical Dynamos and Magnetic Activity (Editors: Kosovichev, Alexander G., de Gouveia Dal Pino, Elisabete & Yan, Yihua), IAU Symposium, 294, p. 375
  4. The origin of the helicity hemispheric sign rule reversals in the mean-field solar-type dynamo [21]
    Pipin, V. V., Zhang, H., Sokoloff, D. D., Kuzanyan, K. M. & Gao, Y., MNRAS, 435, 2581
  5. Helicity─vorticity turbulent pumping of magnetic fields in the solar convection zone [3]
    Pipin, V. V., Geophysical and Astrophysical Fluid Dynamics, 107, 185
  6. The Mean-field Solar Dynamo with a Double Cell Meridional Circulation Pattern [36]
    Pipin, V. V. & Kosovichev, A. G., ApJ, 776, 36
  7. Helicity Conservation in Nonlinear Mean-field Solar Dynamo [23]
    Pipin, V. V., Sokoloff, D. D., Zhang, H. & Kuzanyan, K. M., ApJ, 768, 46
  8. Helicity-vorticity turbulent pumping of magnetic fields in the solar dynamo [0]
    Pipin, V. V., Solar and Astrophysical Dynamos and Magnetic Activity (Editors: Kosovichev, Alexander G., de Gouveia Dal Pino, Elisabete & Yan, Yihua), IAU Symposium, 294, p. 367
  9. A new dynamo pattern revealed by the tilt angle of bipolar sunspot groups [46]
    Tlatov, A., Illarionov, E., Sokoloff, D. & Pipin, V., MNRAS, 432, 2975

2012

  1. Variations of the solar cycle profile in a solar dynamo with fluctuating dynamo governing parameters [47]
    Pipin, V. V., Sokoloff, D. D. & Usoskin, I. G., A&A, 542, A26

2011

  1. The fluctuating α-effect and Waldmeier relations in the nonlinear dynamo models [13]
    Pipin, V. V. & Sokoloff, D. D., Physica Scripta, 84, 065903
  2. Turbulent Cross-helicity in the Mean-field Solar Dynamo Problem [12]
    Pipin, V. V., Kuzanyan, K. M., Zhang, H. & Kosovichev, A. G., ApJ, 743, 160
  3. The Asymmetry of Sunspot Cycles and Waldmeier Relations as a Result of Nonlinear Surface-shear Shaped Dynamo [46]
    Pipin, V. V. & Kosovichev, A. G., ApJ, 741, 1
  4. Mean-field Solar Dynamo Models with a Strong Meridional Flow at the Bottom of the Convection Zone [25]
    Pipin, V. V. & Kosovichev, A. G., ApJ, 738, 104
  5. The Subsurface-shear-shaped Solar αΩ Dynamo [64]
    Pipin, V. V. & Kosovichev, A. G., ApJ, 727, L45

2009

  1. Stellar dynamos with Ω × J effect [22]
    Pipin, V. V. & Seehafer, N., A&A, 493, 819
  2. An advective solar-type dynamo without the α effect [11]
    Seehafer, N. & Pipin, V. V., A&A, 508, 9

2008

  1. On the turbulent sources of the solar dynamo [1]
    Pipin, V. V. & Seehafer, N., arXiv:0812.1466
  2. Closure tests for mean field magnetohydrodynamics using a self-consistent reduced model [1]
    Pipin, V. V. & Proctor, M. R. E., MNRAS, 388, 367
  3. The mean electro-motive force and current helicity under the influence of rotation, magnetic field and shear [52]
    Pipin, V. V., Geophysical and Astrophysical Fluid Dynamics, 102, 21

2007

  1. Probing current and cross-helicity in the solar atmosphere: A challenge for theory [13]
    Kuzanyan, Kirill M., Pipin, Valery V. & Zhang, Hongqi, Advances in Space Research, 39, 1694
  2. The shear-induced alpha-effect and long-term variations in solar dynamo [0]
    Pipin, V. V., arXiv:0712.2701
  3. Generation of solar magnetic fields by the αδΘ dynamo [5]
    Pipin, V. V., Astronomy Reports, 51, 411

2006

  1. The Alpha Effect and the Observed Twist and Current Helicity of Solar Magnetic Fields [14]
    Kuzanyan, K. M., Pipin, V. V. & Seehafer, N., Solar Physics, 233, 185

2005

  1. On the α Effect and Current Helicity of Solar Magnetic Fields [0]
    Kuzanyan, K. M., Pipin, V. V. & Seehafer, N., The Dynamic Sun: Challenges for Theory and Observations (Editors: Danesy, D., Poedts, S., de Groof, A. & Andries, J.), ESA Special Publication, 11, p. 6.1
  2. The Effects of Current Helicity and Shear on the Mean Electromotive Force and on the Long-Term Magnetic Activity Variations in Stellar Dynamos [0]
    Pipin, V. & Kuzanyan, K., The Dynamic Sun: Challenges for Theory and Observations (Editors: Danesy, D., Poedts, S., de Groof, A. & Andries, J.), ESA Special Publication, 11, p. 51.1

2004

  1. Changes in space weather and heliospheric oscillations due to rotation and rearrangement of solar magnetic field [0]
    Mordvinov, A. V., Plyusnina, L. A. & Pipin, V. V., Multi-Wavelength Investigations of Solar Activity (Editors: Stepanov, Alexander V., Benevolenskaya, Elena E. & Kosovichev, Alexander G.), IAU Symposium, 223, p. 553
  2. Variations in the Solar Luminosity, Radius, and Quadrupole Moment as Effects of a Large-Scale Dynamo in the Solar Convection Zone [11]
    Pipin, V. V., Astronomy Reports, 48, 418

2003

  1. The s-Effect and Current Helicity for Fast Sheared Rotators [4]
    Pipin, V. V., Geophysical and Astrophysical Fluid Dynamics, 97, 25
  2. Helicity and the solar dynamo [16]
    Seehafer, N., Gellert, M., Kuzanyan, K. M. & Pipin, V. V., Advances in Space Research, 32, 1819

2001

  1. Diffusion of a Passive Scalar in a Rotating Medium with Anisotropic Turbulence [1]
    Pipin, V. V., Astronomy Letters, 27, 171
  2. Alpha-Effect, Helicity and Angular Momentum Transport for a Magnetically Driven Turbulence in the Solar Convection Zone [21]
    Rüdiger, G., Pipin, V. V. & Belvedère, G., Solar Physics, 198, 241
  3. Lithium as a passive tracer probing the rotating solar tachocline turbulence [19]
    Rüdiger, G. & Pipin, V. V., A&A, 375, 149

2000

  1. Alpha Effect. Current and Kinematic Helicities for Magnetically Driven Turbulence, and Solar Dynamo [0]
    Belvedere, Gaetano, Pipin, V. V. & Rüdiger, G., Journal of Astrophysics and Astronomy, 21, 387
  2. The Solar Dynamo and Integrated Irradiance Variations in the Course of the 11-Year Cycle [12]
    Pipin, V. V. & Kichatinov, L. L., Astronomy Reports, 44, 771
  3. Rotation-induced lithium depletion of solar-type stars in young stellar clusters [1]
    Rüdiger, G. & Pipin, V. V., Stellar Clusters and Associations: Convection, Rotation, and Dynamos (Editors: Pallavicini, R., Micela, G. & Sciortino, S.), Astronomical Society of the Pacific Conference Series, 198, p. 361
  4. Viscosity-alpha and dynamo-alpha for magnetically driven compressible turbulence in Kepler disks [37]
    Rüdiger, G. & Pipin, V. V., A&A, 362, 756

1999

  1. Solar torsional oscillations and the grand activity cycle [44]
    Kitchatinov, L. L., Pipin, V. V., Makarov, V. I. & Tlatov, A. G., Solar Physics, 189, 227
  2. Observations of oscillations in sunspot's chromosphere. [0]
    Kobanov, N. I. & Pipin, V. V., JOSO Annu. Rep., 1998, p. 118
  3. The Gleissberg cycle by a nonlinear alpha L\ dynamo [58]
    Pipin, V. V., A&A, 346, 295
  4. A helicity proxy from horizontal solar flow patterns [11]
    Rüdiger, G., Brandenburg, A. & Pipin, V. V., Astronomische Nachrichten, 320, 135

1998

  1. Solar torsional oscillations and the grand activity cycle as a consequence of interaction between the magnetic field and rotation [9]
    Kitchatinov, L. L. & Pipin, V. V., Astronomy Reports, 42, 808

1996

  1. Solar torsional oscillations due to the magnetic quenching of the Reynolds stress. [32]
    Kueker, M., Ruediger, G. & Pipin, V. V., A&A, 312, 615
  2. The rotational quenching of the rotation-induced kinetic alpha-effect [12]
    Pipin, V. V., Rüdiger, G. & Kitchatinov, L. L., Geophysical and Astrophysical Fluid Dynamics, 83, 119

1995

  1. On the transport of large-scale magnetic fields in the turbulent convective envelope of the sun [1]
    Pipin, V. V., Astronomy Letters, 21, 199

1994

  1. Magnetic field advection in the SCZ: mean-field buoyancy vs. flux-tube buoyancy [0]
    Kitchatinov, L. L. & Pipin, V. V., Solar Magnetic Fields (Editors: Schüssler, Manfred & Schmidt, Wolfgang), p. 143
  2. Turbulent viscosity, magnetic diffusivity, and heat conductivity under the influence of rotation and magnetic field [220]
    Kitchatinov, L. L., Pipin, V. V. & Ruediger, G., Astronomische Nachrichten, 315, 157
  3. Turbulence in a rotating magnetized fluid [0]
    Pipin, V. V., Astronomische Nachrichten, 315, 151

1993

  1. Buoyancy of the mean magnetic field in a turbulent medium [1]
    Kichatinov, L. L. & Pipin, V. V., Astronomy Letters, 19, 221
  2. Mean-field buoyancy [38]
    Kichatinov, L. L. & Pipin, V. V., A&A, 274, 647


Created on Wed Apr 22 04:31:57 2026.