Publications


  1. 1.Energy conservation and gravity waves in sound-proof treatments of stellar interiors: Part II pseudo- incompressible equations, Vasil, G M, Lecoanet, D, Brown, B P, & Zweibel, E G, 2013, ApJ, to be submitted

  2. 2.Magnetic activity cycles in the exoplanet host star Epsilon Eridani, Metcalfe, T S, Buccino, A P, Brown, B P, Mathur, S, Soderblom, D R, Henry, T J, Mauas, PJD, Petrucci, R, Hall, J C, & Basu, S, 2013, ApJ, 763, L26:1-5

  3. 3.Buoyant magnetic loops generated by global convective dynamo action, Nelson, N J, Brown, B P, Brun, A S, Miesch, M S, & Toomre, J, 2012b, Solar Physics, pp. 1–22 in press (on astroph)

  4. 4.Magnetic wreaths and cycles in convective dynamos, Nelson, N J, Brown, B P, Brun, A S, Miesch, M S, & Toomre, J, 2013, ApJ, 762, 73:1-20

  5. 5.Energy Conservation and Gravity Waves in Sound-Proof Treatments of Stellar Interiors: Part I Anelastic Approximations, Brown, B P, Vasil G M, Zweibel E G, 2012, ApJ, 756, 109:1-20

  6. 6.Direct observation of the turbulent emf and transport of magnetic field in a liquid sodium experiment, Rahbarnia, K, Brown, B P, Clark, M M, Kaplan, E J, Nornberg, M D, Rasmus, A M, Zane Taylor, N, Forest, C B, Jenko, F, Limone, A, Pinton, J-F, Plihon, N, & Verhille, G, 2012, ApJ, 759, 80:1–6

  7. 7.Convection and differential rotation in F-type stars, Augustson, K C, Brown, B P, Brun, A S, Miesch, M S, & Toomre, J, 2012, ApJ, 756, 169:1–23

  8. 8.Resistive and ferritic-wall plasma dynamos in a sphere, Khalzov, I V, Brown, B P, Kaplan, E J, Katz, N, Paz-Soldan, C, Rahbarnia, K, Spence, E J, Forest, C B, 2012, Physics of Plasmas,

  9. 9.Role of large-scale velocity fluctuations in a two-vortex kinematic dynamo, Kaplan, E J, Brown, B P, Rahbarnia, K, Forest, C B, 2012, Phys Rev E, 85, 6:1-9

  10. 10.Modeling the Parker instability in a rotating plasma screw pinch, Khalzov, I. V.; Brown, B. P.; Katz, N.; Forest, C. B., 2012, Physics of Plasmas, 19:1-10

  11. 11.Convective Babcock-Leighton Dynamo Models, Miesch, M. S.; Brown, B. P., ApJ, 746, L26:1-5

  12. 12.Convection and differential rotation properties of G and K stars computed with the ASH code, Matt, S. P.; Do Cao, O.; Brown, B. P.; Brun, A. S., 2011,  Astronomische Nachrichten, 332, 897

  13. 13. Buoyant magnetic loops in a global dynamo simulation of a young sun, Nelson, N J, Brown, B P, Brun, A S, Miesch, M S, & Toomre, J, 2011, ApJ, 739, L38:1-5

  14. 14.Magnetic Cycles in a Convective Dynamo Simulation of a Young Solar-type Star, Brown, B P, Miesch, M S, Browning, M K, Brun, A S, & Toomre, J, 2011, ApJ, 731, 69:1–19

  15. 15.Numerical simulation of laminar plasma dynamos in a cylindrical von Ka ́rma ́n flow, Khalzov, I V, Brown, B P, Ebrahimi, F, Schnack, D D, & Forest, C B, 2011, Physics of Plasmas, 18(3), 032110:1–9

  16. 16.Persistent magnetic wreaths in a rapidly rotating sun, Brown, B P, Browning, M K, Brun, A S, Miesch, M S, & Toomre, J, 2010, ApJ, 711, 424–438

  17. 17.Exploring the Pcyc vs. Prot relation with flux transport dynamo models of solar-like stars, Jouve, L, Brown, B P, & Brun, A S, 2010, A&A, 509, A32:1–11

  18. 18.Rapidly rotating suns and active nests of convection, Brown, B P, Browning, M K, Brun, A S, Miesch, M S, & Toomre, J, 2008, ApJ, 689, 1354–1372

  19. 19.Rapid rotation, active nests of convection and global-scale flows in solar-like stars, Brown, B P, Browning, M K, Brun, A S, Miesch, M S & Toomre, J, 2007, Astron. Nachr., 328, 1002–1005


Conference proceedings are not generally listed here but can be found through my ArXiV page or through the ADS

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