Publications of Hideyuki Hotta ordered by citations
A list of publications authored or co-authored by Hideyuki Hotta, derived from the SAO/NASA Astrophysics Data System (ADS) and ordered by the numbers of citations.
Orcid ID: 0000-0002-6312-7944
Number of papers: 38
No. of citations: 1102
| 114
| Large-scale magnetic fields at high Reynolds numbers in magnetohydrodynamic simulations
Hotta, H., Rempel, M. & Yokoyama, T., 2016, Science, 351, 1427
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| 107
| Asteroseismic detection of latitudinal differential rotation in 13 Sun-like stars
Benomar, O., Bazot, M., Nielsen, M. B., Gizon, L., Sekii, T., Takata, M., Hotta, H., Hanasoge, S., Sreenivasan, K. R. & Christensen-Dalsgaard, J., 2018, Science, 361, 1231
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| 97
| High-resolution Calculation of the Solar Global Convection with the Reduced Speed of Sound Technique. II. Near Surface Shear Layer with the Rotation
Hotta, H., Rempel, M. & Yokoyama, T., 2015, ApJ, 798, 51
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| 66
| High-resolution Calculations of the Solar Global Convection with the Reduced Speed of Sound Technique. I. The Structure of the Convection and the Magnetic Field without the Rotation
Hotta, H., Rempel, M. & Yokoyama, T., 2014, ApJ, 786, 24
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| 63
| Solar Parity Issue with Flux-transport Dynamo
Hotta, H. & Yokoyama, T., 2010, ApJ, 714, L308
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| 60
| Efficient Small-scale Dynamo in the Solar Convection Zone
Hotta, H., Rempel, M. & Yokoyama, T., 2015, ApJ, 803, 42
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| 59
| Generation of Solar-like Differential Rotation
Hotta, H., Kusano, K. & Shimada, R., 2022, ApJ, 933, 199
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| 59
| Solar differential rotation reproduced with high-resolution simulation
Hotta, H. & Kusano, K., 2021, Nature Astronomy, 5, 1100
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| 55
| Solar Overshoot Region and Small-scale Dynamo with Realistic Energy Flux
Hotta, H., 2017, ApJ, 843, 52
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| 52
| Weak influence of near-surface layer on solar deep convection zone revealed by comprehensive simulation from base to surface
Hotta, H., Iijima, H. & Kusano, K., 2019, Science Advances, 5, 2307
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| 49
| Numerical calculation of convection with reduced speed of sound technique
Hotta, H., Rempel, M., Yokoyama, T., Iida, Y. & Fan, Y., 2012, A&A, 539, A30
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| 42
| On rising magnetic flux tube and formation of sunspots in a deep domain
Hotta, H. & Iijima, H., 2020, MNRAS, 494, 2523
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| 39
| Importance of Surface Turbulent Diffusivity in the Solar Flux-Transport Dynamo
Hotta, H. & Yokoyama, T., 2010, ApJ, 709, 1009
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| 38
| Spontaneous Generation of δ-sunspots in Convective Magnetohydrodynamic Simulation of Magnetic Flux Emergence
Toriumi, Shin & Hotta, Hideyuki, 2019, ApJ, 886, L21
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| 30
| Modeling of Differential Rotation in Rapidly Rotating Solar-type Stars
Hotta, H. & Yokoyama, T., 2011, ApJ, 740, 12
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| 29
| Convective Velocity Suppression via the Enhancement of the Subadiabatic Layer: Role of the Effective Prandtl Number
Bekki, Y., Hotta, H. & Yokoyama, T., 2017, ApJ, 851, 74
|
| 19
| Effect of Morphological Asymmetry between Leading and Following Sunspots on the Prediction of Solar Cycle Activity
Iijima, H., Hotta, H. & Imada, S., 2019, ApJ, 883, 24
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| 16
| Turbulence in the Sun is suppressed on large scales and confined to equatorial regions
Hanasoge, Shravan M., Hotta, Hideyuki & Sreenivasan, Katepalli R., 2020, Science Advances, 6, eaba9639
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| 15
| A Comprehensive Simulation of Solar Wind Formation from the Solar Interior: Significant Cross-field Energy Transport by Interchange Reconnection near the Sun
Iijima, Haruhisa, Matsumoto, Takuma, Hotta, Hideyuki & Imada, Shinsuke, 2023, ApJ, 951, L47
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| 15
| Breaking Taylor-Proudman Balance by Magnetic Fields in Stellar Convection Zones
Hotta, H., 2018, ApJ, 860, L24
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| 12
| Formation of superstrong horizontal magnetic field in delta-type sunspot in radiation magnetohydrodynamic simulations
Hotta, H. & Toriumi, S., 2020, MNRAS, 498, 2925
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| 11
| Magnetic Field Intensification by the Three-dimensional "Explosion" Process
Hotta, H., Rempel, M. & Yokoyama, T., 2012, ApJ, 759, L24
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| 9
| Generation of twist on magnetic flux tubes at the base of the solar convection zone
Hotta, H. & Yokoyama, T., 2012, A&A, 548, A74
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| 8
| Estimation of Turbulent Diffusivity with Direct Numerical Simulation of Stellar Convection
Hotta, H., Iida, Y. & Yokoyama, T., 2012, ApJ, 751, L9
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| 8
| Impact of subsurface convective flows on the formation of sunspot magnetic field and energy build-up
Kaneko, Takafumi, Hotta, Hideyuki, Toriumi, Shin & Kusano, Kanya, 2022, MNRAS, 517, 2775
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| 6
| Mean-field Analysis on Large-scale Magnetic Fields at High Reynolds Numbers
Shimada, Ryota, Hotta, Hideyuki & Yokoyama, Takaaki, 2022, ApJ, 935, 55
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| 5
| Simultaneous Construction of Fast Equator, Poleward Meridional Flow, and Near-surface Shear Layer in Solar Magnetohydrodynamic Calculation
Hotta, H., 2025, ApJ, 985, 163
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| 5
| Investigation of the dependence of angular momentum transport on spatial scales for construction of differential rotation
Mori, K. & Hotta, H., 2023, MNRAS, 519, 3091
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| 3
| Novel Approach to Forecasting Photospheric Emergence of Active Regions
Silva, S. S. A., Lennard, M., Verth, G., Ballai, I., Rempel, E. L., Warnecke, J., Iijima, H., Hotta, H., Park, S.-H., Donea, A. C., Kusano, K. & Fedun, V., 2023, ApJ, 948, L24
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| 3
| Convective Magnetic Flux Emergence Simulations from the Deep Solar Interior to the Photosphere: Comprehensive Study of Flux Tube Twist
Toriumi, Shin, Hotta, Hideyuki & Kusano, Kanya, 2024, ApJ, 975, 209
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| 2
| Spatial Inhomogeneity of Kinetic and Magnetic Dissipations in Thermal Convection
Hotta, H., 2017, ApJ, 845, 164
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| 2
| Inversion for Inferring Solar Meridional Circulation: The Case with Constraints on Angular Momentum Transport inside the Sun
Hatta, Yoshiki, Hotta, Hideyuki & Sekii, Takashi, 2024, ApJ, 972, 79
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| 2
| Solar horizontal flow evaluation using neural network and numerical simulations with snapshot data
Masaki, Hiroyuki, Hotta, Hideyuki, Katsukawa, Yukio & Ishikawa, Ryohtaroh T., 2023, Publications of the Astronomical Society of Japan, 75, 1168
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| 1
| Scale-dependent analysis of angular momentum flux in high-resolution magnetohydrodynamic simulations for solar differential rotation
Mori, K. & Hotta, H., 2023, MNRAS, 524, 4746
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| 1
| Recovering coherent flow structures in active regions using machine learning
Lennard, Matthew G., Silva, Suzana S. A., Tremblay, Benoit, Ramos, Andrés Asensio, Verth, Gary, Ballai, Istvan, Iijima, Haruhisa, Hotta, Hideyuki, Rempel, Matthias, Park, Sung-Hong & Fedun, Viktor, 2025, MNRAS, 539, 2498
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| 0
| Relationship between magnetic field properties and statistical flow using numerical simulation and magnetic feature tracking on solar photosphere
Takahata, K., Hotta, H., Iida, Y. & Oba, T., 2021, MNRAS, 503, 3610
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| 0
| Detection of solar internal flows with numerical simulation and machine learning
Masaki, Hiroyuki & Hotta, Hideyuki, 2024, Publications of the Astronomical Society of Japan, 76, L33
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| 0
| Genetic Algorithm for Inferring Model Parameters for Flux Transport Dynamo Simulation
Shimizu, Y. & Hotta, H., 2026, ApJ, 996, 102
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Created on Wed Apr 22 04:35:26 2026.
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