Development of a Very Faint Meteor Detection System based on an EMCCD Sensor and Matched Filter Processing
arXiv:2112.15507 · doi:10.1007/s10686-021-09828-3
Abstract
The mass ranges of meteors, imaged by electro-optical (EO) cameras and backscatter radar receivers, for the most part do not overlap. Typical EO systems detect meteoroid masses down to 10 kg or roughly magnitude +2 meteors when using moderate field of view optics, un-intensified optical components, and meteor entry velocities around 45 km/sec. This is near the high end of the mass range of typical meteor radar observations. Having the same mass meteor measured by different sensor wavelength bands would be a benefit in terms of calibrating mass estimations for both EO and radar. To that end, the University of Western Ontario (UWO) has acquired and deployed a very low light imaging system based on an electron-multiplying CCD camera technology. This embeds a very low noise, per pixel intensifier chip in a cooled camera setup with various options for frame rate, region of interest and binning. The EO system of optics and sensor was optimally configured to collect 32 frames per second in a square field of view 14.7 degrees on a side, achieving a single-frame stellar limiting magnitude of m = +10.5. The system typically observes meteors of +6.5. A key development in this pipeline has been the first true application of matched filter processing to process the faintest meteors possible in the EMCCD system while also yielding high quality automated metric measurements of meteor focal plane positions. With pairs of EMCCD systems deployed at two sites, triangulation and high accuracy orbits are one of the many products being generated by this system. These measurements will be coupled to observations from the Canadian Meteor Orbit Radar (CMOR) used for meteor plasma characterization and the Canadian Automated Meteor Observatory (CAMO) high resolution mirror tracking system.
50 pages, 19 figures, accepted to Experimental Astronomy
References in corpus (13)
- Finding Very Small Near-Earth Asteroids using Synthetic Tracking
- Estimating trajectories of meteors: an observational Monte Carlo approach -- I. Theory
- Extreme faint flux imaging with an EMCCD
- Extreme faint flux imaging with an EMCCD
- A reproducible method to determine the meteoroid mass index
- High precision meteor observations with the Canadian Automated Meteor Observatory -- Data reduction pipeline and application to meteoroid mechanical strength measurements
- Simultaneous Optical and Meteor Head Echo measurements using the Middle Atmosphere Alomar Radar System (MAARSY): Data collection and preliminary analysis
- Luminous efficiency estimates of meteors -II. Application to Canadian Automated Meteor Observatory meteor events
- SuprimeCam Observation of Sporadic Meteors during Perseids 2004
- Iron Rain: measuring the occurrence rate and origin of small iron meteoroids at Earth
- Blind Detection of Ultra-faint Streaks with a Maximum Likelihood Method
- Relationship between Radar Cross Section and Optical Magnitude based on Radar and Optical Simultaneous Observations of Faint Meteors
- Luminosity Function of Faint Sporadic Meteors measured with a Wide-Field CMOS mosaic camera Tomo-e PM
Cited by in corpus (5)
- Decameter-sized Earth impactors -- I: Orbital properties
- Multifold enhancement of quantum SNR by using an EMCCD as a photon number resolving device
- A Statistical Approach to Quantifying Uncertainty in Meteoroid Physical Properties
- Quantifying the Bulk Density of Southern Delta Aquariid Meteoroids: Insights from the Canadian Automated Meteor Observatory
- A reference meteor magnitude for intercomparable fluxes