SwePub
Tyck till om SwePub Sök här!
Sök i SwePub databas

  Utökad sökning

Träfflista för sökning "WFRF:(Piazza C) "

Sökning: WFRF:(Piazza C)

  • Resultat 1-10 av 68
Sortera/gruppera träfflistan
   
NumreringReferensOmslagsbildHitta
1.
  • 2021
  • swepub:Mat__t
  •  
2.
  • Glasbey, JC, et al. (författare)
  • 2021
  • swepub:Mat__t
  •  
3.
  • Tabiri, S, et al. (författare)
  • 2021
  • swepub:Mat__t
  •  
4.
  • Bravo, L, et al. (författare)
  • 2021
  • swepub:Mat__t
  •  
5.
  • 2021
  • swepub:Mat__t
  •  
6.
  •  
7.
  •  
8.
  •  
9.
  • Benz, W., et al. (författare)
  • The CHEOPS mission
  • 2021
  • Ingår i: Experimental Astronomy. - : Springer Science and Business Media LLC. - 0922-6435 .- 1572-9508. ; 51:1, s. 109-151
  • Tidskriftsartikel (refereegranskat)abstract
    • The CHaracterising ExOPlanet Satellite (CHEOPS) was selected on October 19, 2012, as the first small mission (S-mission) in the ESA Science Programme and successfully launched on December 18, 2019, as a secondary passenger on a Soyuz-Fregat rocket from Kourou, French Guiana. CHEOPS is a partnership between ESA and Switzerland with important contributions by ten additional ESA Member States. CHEOPS is the first mission dedicated to search for transits of exoplanets using ultrahigh precision photometry on bright stars already known to host planets. As a follow-up mission, CHEOPS is mainly dedicated to improving, whenever possible, existing radii measurements or provide first accurate measurements for a subset of those planets for which the mass has already been estimated from ground-based spectroscopic surveys. The expected photometric precision will also allow CHEOPS to go beyond measuring only transits and to follow phase curves or to search for exo-moons, for example. Finally, by unveiling transiting exoplanets with high potential for in-depth characterisation, CHEOPS will also provide prime targets for future instruments suited to the spectroscopic characterisation of exoplanetary atmospheres. To reach its science objectives, requirements on the photometric precision and stability have been derived for stars with magnitudes ranging from 6 to 12 in the V band. In particular, CHEOPS shall be able to detect Earth-size planets transiting G5 dwarf stars (stellar radius of 0.9R⊙) in the magnitude range 6 ≤ V ≤ 9 by achieving a photometric precision of 20 ppm in 6 hours of integration time. In the case of K-type stars (stellar radius of 0.7R⊙) of magnitude in the range 9 ≤ V ≤ 12, CHEOPS shall be able to detect transiting Neptune-size planets achieving a photometric precision of 85 ppm in 3 hours of integration time. This precision has to be maintained over continuous periods of observation for up to 48 hours. This precision and stability will be achieved by using a single, frame-transfer, back-illuminated CCD detector at the focal plane assembly of a 33.5 cm diameter, on-axis Ritchey-Chrétien telescope. The nearly 275 kg spacecraft is nadir-locked, with a pointing accuracy of about 1 arcsec rms, and will allow for at least 1 Gbit/day downlink. The sun-synchronous dusk-dawn orbit at 700 km altitude enables having the Sun permanently on the backside of the spacecraft thus minimising Earth stray light. A mission duration of 3.5 years in orbit is foreseen to enable the execution of the science programme. During this period, 20% of the observing time is available to the wider community through yearly ESA call for proposals, as well as through discretionary time approved by ESA’s Director of Science. At the time of this writing, CHEOPS commissioning has been completed and CHEOPS has been shown to fulfill all its requirements. The mission has now started the execution of its science programme.
  •  
10.
  • Bonfanti, A., et al. (författare)
  • CHEOPS observations of the HD 108236 planetary system: A fifth planet, improved ephemerides, and planetary radii
  • 2021
  • Ingår i: Astronomy and Astrophysics. - : EDP Sciences. - 0004-6361 .- 1432-0746. ; 646
  • Tidskriftsartikel (refereegranskat)abstract
    • Context. The detection of a super-Earth and three mini-Neptunes transiting the bright (V = 9.2 mag) star HD 108236 (also known as TOI-1233) was recently reported on the basis of TESS and ground-based light curves. Aims. We perform a first characterisation of the HD 108236 planetary system through high-precision CHEOPS photometry and improve the transit ephemerides and system parameters. Methods. We characterise the host star through spectroscopic analysis and derive the radius with the infrared flux method. We constrain the stellar mass and age by combining the results obtained from two sets of stellar evolutionary tracks. We analyse the available TESS light curves and one CHEOPS transit light curve for each known planet in the system. Results. We find that HD 108236 is a Sun-like star with R? = 0.877 ± 0.008 R? , M? = 0.869-0.048+0.050 M? , and an age of 6.7-5.1+4.0 Gyr. We report the serendipitous detection of an additional planet, HD 108236 f, in one of the CHEOPS light curves. For this planet, the combined analysis of the TESS and CHEOPS light curves leads to a tentative orbital period of about 29.5 days. From the light curve analysis, we obtain radii of 1.615 ± 0.051, 2.071 ± 0.052, 2.539-0.065+0.062, 3.083 ± 0.052, and 2.017-0.057+0.052 R? for planets HD 108236 b to HD 108236 f, respectively. These values are in agreement with previous TESS-based estimates, but with an improved precision of about a factor of two. We perform a stability analysis of the system, concluding that the planetary orbits most likely have eccentricities smaller than 0.1. We also employ a planetary atmospheric evolution framework to constrain the masses of the five planets, concluding that HD 108236 b and HD 108236 c should have an Earth-like density, while the outer planets should host a low mean molecular weight envelope. Conclusions. The detection of the fifth planet makes HD 108236 the third system brighter than V = 10 mag to host more than four transiting planets. The longer time span enables us to significantly improve the orbital ephemerides such that the uncertainty on the transit times will be of the order of minutes for the years to come. A comparison of the results obtained from the TESS and CHEOPS light curves indicates that for a V - 9 mag solar-like star and a transit signal of -500 ppm, one CHEOPS transit light curve ensures the same level of photometric precision as eight TESS transits combined, although this conclusion depends on the length and position of the gaps in the light curve.
  •  
Skapa referenser, mejla, bekava och länka
  • Resultat 1-10 av 68
Typ av publikation
tidskriftsartikel (61)
konferensbidrag (2)
Typ av innehåll
refereegranskat (59)
övrigt vetenskapligt/konstnärligt (4)
Författare/redaktör
Davies, M.B. (14)
Beck, T. (12)
Alibert, Y. (12)
Broeg, C. (12)
Benz, W. (12)
Alonso, R. (12)
visa fler...
Hoyer, S. (12)
Deleuil, M. (12)
Simon, A.E. (12)
Gandolfi, D. (12)
Bárczy, T. (12)
Barros, S.C.C. (12)
Baumjohann, W. (12)
Bonfils, X. (12)
Charnoz, S. (12)
Delrez, L. (12)
Demory, B.O. (12)
Ehrenreich, D. (12)
Fortier, A. (12)
Fossati, L. (12)
Fridlund, Malcolm, 1 ... (12)
Laskar, J. (12)
Lendl, M. (12)
Magrin, D. (12)
Ottensamer, R. (12)
Pagano, I. (12)
Peter, G. (12)
Queloz, D. (12)
Rando, N. (12)
Rauer, H. (12)
Ribas, I. (12)
Segransan, D. (12)
Sousa, S.G. (12)
Walton, N. A. (11)
Wilson, T.G. (11)
Billot, N. (11)
Santos, N. C. (11)
Beck, M (10)
Brandeker, Alexis (10)
Collier Cameron, A. (10)
Erikson, Anders (9)
Ferlito, A (9)
Demangeon, O. (9)
Gillon, Michaël (9)
Isaak, K. (9)
Maxted, P. (9)
Nascimbeni, Valerio (9)
Piotto, Giampaolo P. (9)
Scandariato, Gaetano (9)
Szabó, G.M. (9)
visa färre...
Lärosäte
Karolinska Institutet (32)
Chalmers tekniska högskola (13)
Stockholms universitet (12)
Lunds universitet (12)
Kungliga Tekniska Högskolan (11)
Göteborgs universitet (4)
visa fler...
Uppsala universitet (4)
Linköpings universitet (3)
Umeå universitet (1)
Örebro universitet (1)
visa färre...
Språk
Engelska (68)
Forskningsämne (UKÄ/SCB)
Naturvetenskap (26)
Teknik (5)
Medicin och hälsovetenskap (5)

År

Kungliga biblioteket hanterar dina personuppgifter i enlighet med EU:s dataskyddsförordning (2018), GDPR. Läs mer om hur det funkar här.
Så här hanterar KB dina uppgifter vid användning av denna tjänst.

 
pil uppåt Stäng

Kopiera och spara länken för att återkomma till aktuell vy