activity
20062009
most citedRoboNet-II: Follow-up observations of microlensing events with a robotic network of telescopes

100 citations · 312 across the 7 of their papers we have counts for

collaborators

6 papers

astro-ph.SR20093 cited

New Methods for Determining the Ages of PMS Stars

Tim Naylor, N. J. Mayne, R. D. Jeffries +2

We present three new methods for determining the age of groups of pre-main-sequence stars. The first, creating empirical isochrones allows us to create a robust age ordering, but n…

astro-ph2008100 cited

RoboNet-II: Follow-up observations of microlensing events with a robotic network of telescopes

Y. Tsapras, R. Street, K. Horne +20

RoboNet-II uses a global network of robotic telescopes to perform follow-up observations of microlensing events in the Galactic Bulge. The current network consists of three 2m tele…

astro-ph20082 cited

Autonomous software: Myth or magic?

Alasdair Allan, Tim Naylor, Eric S. Saunders

We discuss work by the eSTAR project which demonstrates a fully closed loop autonomous system for the follow up of possible micro-lensing anomalies. Not only are the initial micro-…

astro-ph20086 cited

An Autonomous Adaptive Scheduling Agent for Period Searching

Eric S. Saunders, Tim Naylor, Alasdair Allan

We describe the design and implementation of an autonomous adaptive software agent that addresses the practical problem of observing undersampled, periodic, time-varying phenomena…

astro-ph200689 cited

Empirical isochrones and relative ages for young stars, and the radiative-convective gap

N. J. Mayne, Tim Naylor, S. P. Littlefair +2

We have selected pre-main-sequence stars in 12 groups of notional ages ranging from 1 Myr to 35 Myrs, using heterogeneous membership criteria. Using these members we have construct…

astro-ph200612 cited

Optimal placement of a limited number of observations for period searches

Eric S. Saunders, Tim Naylor, Alasdair Allan

Robotic telescopes present the opportunity for the sparse temporal placement of observations when period searching. We address the best way to place a limited number of observation…