1. Berzhitskii, V.N., Ermakov, M.A., Il’in, V.N., Smoller, Yu.L., Yurist, S.Sh., Bolotin, Yu.V., Golovan, A.A., Parusnikov, N.A., Gavrov, E.V., Rekunov, D.A., Fedorov, A.E., Gabell, A., Tukett, N., Olson, D., and Shabanov, A.V., Airborne GT-X Gravimeter, Nazemnaya, morskaya i aerogravimetriya: izmereniya na podvizhnykh i nepodvizhnykh osnovaniyakh. Tez. dokl. na Mezhdunarodnom simpoziume (Abstr. Int. Symp. on Land-Based, Marine, and Aerial Gravimetry: Measurements at Movable and Unmovable Bases, St. Petersburg, 2010), St. Petersburg: FGUP TsNII Elektropribor, 2010.
2. Drobyshev, N.V., Koneshov, V.N., Rozhkov, Yu.E., Pogorelov, V.V., and Solov’ev, V.N., Specific Features of the Technique of Airborne Gravity Surveys at High Latitudes, Izv. Phys. Solid Earth, 2009, vol. 45, no. 8, pp. 656–660.
3. Mogilevskii, V.E., Kaplun, D.V., Pavlov, S.A., and Kamkov, A.N., Introduction of Airborne Gravity Survey into the Practice of Geophysical Works, Razved. Okhrana Nedr, 2006, no. 5, pp. 3–10.
4. SigmaQ for Quattro G3D, JAVAD GNSS, Inc. http://www.javad.com/downloads/javadgnss/sheets/SigmaQ-Datasheet.pdf
5. Zheleznyak, L.K., Russian Hardware Complexes for Airborne Gravity Surveys: a Review, Razved. Okhrana Nedr, 2002, no. 12, pp. 6–14.