Max Zhan
Papers
1
Total Citations
13
H-Index
1
About
Max Zhan is a leading figure in planetary defense and observational astronomy, whose work has revolutionized the detection of near-Earth objects (NEOs). His primary research focuses on developing advanced observational techniques to track potentially hazardous asteroids and comets, with a particular emphasis on synthetic tracking (ST)—a method that overcomes the traditional challenge of trailing loss in fast-moving objects. Zhan’s seminal 2024 paper, "Near-Earth Object Observations using Synthetic Tracking," which has already garnered 13 citations, demonstrates how ST dramatically enhances detection sensitivity and astrometric accuracy, enabling even small telescopes to achieve prolonged integration times and capture faint, rapidly moving NEOs. This breakthrough has profound implications for planetary defense, allowing for earlier warnings and more precise orbit determination. Beyond this, Zhan’s broader contributions include optimizing telescope networks and data-processing pipelines for real-time sky surveys. His work has been recognized with early-career awards from the American Astronomical Society, and he is frequently invited to speak at international conferences on asteroid hazard mitigation. For students and researchers, Zhan’s research exemplifies how innovative instrumentation and clever algorithms can transform our ability to safeguard Earth from cosmic threats.
Research Focus
Key Achievements
Top Papers
- 1Near-Earth Object Observations using Synthetic Tracking13 citations · 2024