Optical calibration system of NIPR for aurora and airglow observations
Tài liệu tham khảo
Armstrong, 1998, Photometric measurements in the SPRITES ’95 & ’96 campaigns of nitrogen second positive (399.8 nm) and first negative (427.8 nm) emissions, J. Atmos. Terr. Phys., 60, 787, 10.1016/S1364-6826(98)00026-1
Brändström, 2012, Results from the intercalibration of optical low light calibration sources 2011, Geosci. Instrum. Method. Data Syst., 1, 43, 10.5194/gi-1-43-2012
Hosokawa, 2019, Imaging of polar cap patches with a low-cost airglow camera: pilot observations in Svalbard, Norway, Earth Planets Space, 71, 115, 10.1186/s40623-019-1094-7
Hozumi, 2016, Calibration of imaging parameters for space-borne airglow photography using city light positions, Earth Planet Space, 68, 155, 10.1186/s40623-016-0532-z
Hunten, 1956, A photometric unit for the airglow and aurora, J. Atmos. Terr. Phys., 8, 345, 10.1016/0021-9169(56)90111-8
Kataoka, 2015, Compound auroral micromorphology: ground-based high-speed imaging, Earth Planet Space, 67, 23, 10.1186/s40623-015-0190-6
Katoh, 1999, Calibration of all-sky cameras and tilting-photometers using an integrating-sphere and a spectrometer, Antarct. Rec., 43, 1
Nozawa, 2018, A new five-wavelength photometer operated in Tromso (69.6°N, 19.2°E), Earth Planets Space, 70, 193, 10.1186/s40623-018-0962-x
Ogawa, 2020, Development of low-cost multi-wavelength imager system for studies of aurora and airglow, Polar Sci, 10.1016/j.polar.2019.100501
Okano, 1998, Absolute calibration system at NIPR for aurora/airglow measurements using a 1.9 m integrating sphere, 30
Oyama, 2018, Auroral molecular-emission effects on the atomic oxygen line at 777.4 nm, Earth Planets Space, 70, 166, 10.1186/s40623-018-0936-z
Petitdidier, 1983, Calculated transmission profile of an interference filter placed in a convergent beam under various incidence angles, Appl. Optic., 22, 1797, 10.1364/AO.22.001797
Shiokawa, 1999, Development of optical mesosphere thermosphere imagers (OMTI), Earth Planets Space, 51, 887, 10.1186/BF03353247
Shiokawa, 2000, Integrating-sphere calibration of all-sky cameras for nightglow measurements, Adv. Space Res., 26, 1025, 10.1016/S0273-1177(00)00052-1
Shiokawa, 2007, Development of airglow temperature photometers with cooled-CCD detectors, Earth Planets Space, 59, 585, 10.1186/BF03352721
Shiokawa, 2017, Ground-based instruments of the PWING project to investigate dynamics of the inner magnetosphere at subauroral latitudes as a part of the ERG-ground coordinated observation network, Earth Planets Space, 69, 160, 10.1186/s40623-017-0745-9
Sigernes, 2008, Sensitivity calibration of digital colour cameras for auroral imaging, Opt. Express, 16, 15623, 10.1364/OE.16.015623
Sigernes, 2009, The absolute sensitivity of digital colour cameras, Opt. Express, 17, 20211, 10.1364/OE.17.020211
Sigernes, 2014, Auroral all-sky camera calibration, Geosci. Instrum. Method. Data Syst., 3, 241, 10.5194/gi-3-241-2014
Taguchi, 2004, A new all-sky optics for aurora and airglow imaging, Adv. Polar Up. Atmos. Res., 18, 140
Taguchi, 2012, Double bursts inside a poleward-moving auroral form in the cusp, J. Geophys. Res., 117, A12301
Yamamoto, 2002, Calibration of CRL all-sky imagers using an integrating sphere, Adv. Polar Up. Atmos. Res., 16, 173
Yamazaki, 2014, Field-of-View guiding camera on the HISAKI (SPRINT-A) satellite, Space Sci. Rev., 184, 259, 10.1007/s11214-014-0106-y
