Chemodynamics of the Milky Way and disc formation history: Insight from the RAVE and Gaia鈥怑SO surveys

Astronomische Nachrichten Wiley 337:8鈥9 (2016) 904-908

Authors:

G Kordopatis, RFG Wyse, J Binney

Optimisation of confinement in a fusion reactor using a nonlinear turbulence model

(2016)

Authors:

EG Highcock, NR Mandell, M Barnes, W Dorland

Characterizing stellar halo populations II: the age gradient in blue horizontal-branch stars

Monthly Notices of the Royal Astronomical Society Oxford University Press 463:3 (2016) 3169-3185

Authors:

Payel Das, Angus Williams, James Binney

Abstract:

The distribution of Milky Way halo blue horizontal-branch (BHB) stars is examined using action-based extended distribution functions (EDFs) that describe the locations of stars in phase space, metallicity, and age. The parameters of the EDFs are fitted using stars observed in the Sloan Extension for Galactic Understanding and Exploration-II (SEGUE-II) survey that traces the phase-space kinematics and chemistry out to 鈭70 kpc. A maximum a posteriori probability (MAP) estimate method and a Markov Chain Monte Carlo method are applied, taking into account the selection function in positions, distance, and metallicity for the survey. The best-fitting EDF declines with actions less steeply at actions characteristic of the inner halo than at the larger actions characteristic of the outer halo, and older ages are found at smaller actions than at larger actions. In real space, the radial density profile steepens smoothly from 鈭2 at 鈭2 kpc to 鈭4 in the outer halo, with an axis ratio 鈭0.7 throughout. There is no indication for rotation in the BHBs, although this is highly uncertain. A moderate level of radial anisotropy is detected, with 尾s varying from isotropic to between 鈭0.1 and 鈭0.3 in the outer halo depending on latitude. The BHB data are consistent with an age gradient of 鈭0.03鈥塆yr kpc鈭1, with some uncertainty in the distribution of the larger ages. These results are consistent with a scenario in which older, larger systems contribute to the inner halo, whilst the outer halo primarily comprises younger, smaller systems.

Collisionality scaling of the electron heat flux in ETG turbulence

(2016)

Authors:

GJ Colyer, AA Schekochihin, FI Parra, CM Roach, MA Barnes, Y-C Ghim, W Dorland

The Goldreich鈥揝chubert鈥揊ricke instability in stellar radiative zones

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 460:1 (2016) 338-344

Authors:

Andrea Caleo, Steven A Balbus, Emanuele Tognelli