Asteroid Measurements at Millimeter Wavelengths with the South Pole Telescope
Abstract
We present the first measurements of asteroids in millimeter wavelength (mm) data from the South Pole Telescope (SPT), which is used primarily to study the cosmic microwave background (CMB). We analyze maps of two deg sky regions near the ecliptic plane, each observed with the SPTpol camera times over one month. We subtract the mean of all maps of a given field, removing static sky signal, and then average the mean-subtracted maps at known asteroid locations. We detect three asteroids(324) Bamberga, (13) Egeria, and (22) Kalliopewith signal-to-noise ratios (S/N) of 11.2, 10.4, and 6.1, respectively, at 2.0 mm (150 GHz); we also detect (324) Bamberga with S/N of 4.1 at 3.2 mm (95 GHz). We place constraints on these asteroids' effective emissivities, brightness temperatures, and light curve modulation amplitude. Our flux density measurements of (324) Bamberga and (13) Egeria roughly agree with predictions, while our measurements of (22) Kalliope suggest lower flux, corresponding to effective emissivities of at 2.0 mm and at 3.2mm. We predict the asteroids detectable in other SPT datasets and find good agreement with detections of (772) Tanete and (1093) Freda in recent data from the SPT-3G camera, which has the mapping speed of SPTpol. This work is the first focused analysis of asteroids in data from CMB surveys, and it demonstrates we can repurpose historic and future datasets for asteroid studies. Future SPT measurements can help constrain the distribution of surface properties over a larger asteroid population.
Keywords
Cite
@article{arxiv.2202.01406,
title = {Asteroid Measurements at Millimeter Wavelengths with the South Pole Telescope},
author = {P. M. Chichura and A. Foster and C. Patel and N. Ossa-Jaen and P. A. R. Ade and Z. Ahmed and A. J. Anderson and M. Archipley and J. E. Austermann and J. S. Avva and L. Balkenhol and P. S. Barry and R. Basu Thakur and J. A. Beall and K. Benabed and A. N. Bender and B. A. Benson and F. Bianchini and L. E. Bleem and F. R. Bouchet and L. Bryant and K. Byrum and J. E. Carlstrom and F. W. Carter and T. W. Cecil and C. L. Chang and P. Chaubal and G. Chen and H. C. Chiang and H. -M. Cho and T-L. Chou and R. Citron and J. -F. Cliche and T. M. Crawford and A. T. Crites and A. Cukierman and C. M. Daley and E. V. Denison and K. Dibert and J. Ding and M. A. Dobbs and D. Dutcher and W. Everett and C. Feng and K. R. Ferguson and J. Fu and S. Galli and J. Gallicchio and A. E. Gambrel and R. W. Gardner and E. M. George and N. Goeckner-Wald and R. Gualtieri and S. Guns and N. Gupta and R. Guyser and T. de Haan and N. W. Halverson and A. H. Harke-Hosemann and N. L. Harrington and J. W. Henning and G. C. Hilton and E. Hivon and G. P. Holder and W. L. Holzapfel and J. C. Hood and D. Howe and J. D. Hrubes and N. Huang and J. Hubmayr and K. D. Irwin and O. B. Jeong and M. Jonas and A. Jones and T. S. Khaire and L. Knox and A. M. Kofman and M. Korman and D. L. Kubik and S. Kuhlmann and C. -L. Kuo and A. T. Lee and E. M. Leitch and D. Li and A. Lowitz and C. Lu and D. P. Marrone and J. J. McMahon and S. S. Meyer and D. Michalik and M. Millea and L. M. Mocanu and J. Montgomery and C. Corbett Moran and A. Nadolski and T. Natoli and H. Nguyen and J. P. Nibarger and G. Noble and V. Novosad and Y. Omori and S. Padin and Z. Pan and P. Paschos and S. Patil and J. Pearson and K. A. Phadke and C. M. Posada and K. Prabhu and C. Pryke and W. Quan and A. Rahlin and C. L. Reichardt and D. Riebel and B. Riedel and M. Rouble and J. E. Ruhl and B. R. Saliwanchik and J. T. Sayre and K. K. Schaffer and E. Schiappucci and E. Shirokoff and C. Sievers and G. Smecher and J. A. Sobrin and A. Springmann and A. A. Stark and J. Stephen and K. T. Story and A. Suzuki and C. Tandoi and K. L. Thompson and B. Thorne and C. Tucker and C. Umilta and L. R. Vale and T. Veach and J. D. Vieira and G. Wang and N. Whitehorn and W. L. K. Wu and V. Yefremenko and K. W. Yoon and M. R. Young},
journal= {arXiv preprint arXiv:2202.01406},
year = {2023}
}
Comments
21 pages, 9 figures