The Telescopes and Activities on Exoplanet Detection in China. ZHOU Xu National Astronomical Observatories

Similar documents
Japanese Implication

Investigating the Efficiency of the Beijing Faint Object Spectrograph and Camera (BFOSC) of the Xinglong 2.16-m Reflector

Radial Velocity Planet Surveys. Jian Ge, University of Florida

Mass Astronomical Data at Dome A and VO

Testing and data reduction of the Chinese Small Telescope Array (CSTAR) for Dome A,

Hanle Echelle Spectrograph (HESP)

arxiv: v1 [astro-ph.im] 27 Jan 2010

High-resolution échelle at Skalnaté Pleso: future plans and development T. Pribulla

Possibilities for observations of exoplanets in Bulgaria ( and results up to now)

Present and future Chinese large telescope projects

Igor Soszyński. Warsaw University Astronomical Observatory

Introduction to SDSS -instruments, survey strategy, etc

Spectroscopy at 8-10 m telescopes: the GTC perspective. Romano Corradi GRANTECAN

Actuality of Exoplanets Search. François Bouchy OHP - IAP

Overview: Astronomical Spectroscopy

Outline. c.f. Zhao et al. 2006, ChJA&A, 6, 265. Stellar Abundance and Galactic Chemical Evolution through LAMOST Spectroscopic Survey

HD Transits HST/STIS First Transiting Exo-Planet. Exoplanet Discovery Methods. Paper Due Tue, Feb 23. (4) Transits. Transits.

Study of Physical Characteristics of High Apogee Space Debris

Ground-Based Astronomical Centers in Russia, It s Facilities. V.V.Vlasyuk, SAO RAS

The Science Cases for CSTAR, AST3, and KDUST

SALT s Venture into Near Infrared Astronomy with RSS NIR

arxiv: v1 [astro-ph.im] 31 Jul 2014

Introduction to the Chinese Giant Solar Telescope

Pan-Planets. A Search for Transiting Planets Around Cool stars. J. Koppenhoefer, Th. Henning and the Pan-PlanetS Team

The MMT Observatory and Time Domain Astronomy. G. Grant Williams Director, MMT Observatory

VIRUS: A giant spectrograph

These notes may contain copyrighted material! They are for your own use only during this course.

LAMOST Sky Survey --Site limitations and survey planning

Real Telescopes & Cameras. Stephen Eikenberry 05 October 2017

The Doppler Method, or Radial Velocity Detection of Planets: I. Technique

Progress and Results from the Chinese Small Telescope ARray (CSTAR)

Atmospheric monitoring strategy for the Ali site, Tibet

NAOYUKI TAMURA Subaru Instrument Astronomer Subaru Telescope, NAOJ

1. Give short answers to the following questions. a. What limits the size of a corrected field of view in AO?

The Optical Microvariability and Spectral Changes of the BL Lacertae Object S

Venus 2012 transit: spectroscopy and high resolution observations proposals

Rapid instrument exchanging system for the Cassegrain focus of the Lijiang 2.4-m Telescope

A very versatile, large A-omega, fibre-fed spectrograph design. Ian Parry IoA, Cambridge

JINA Observations, Now and in the Near Future

Stellar Observations Network Group

The Transneptunian Automated Occultation Survey (TAOS II) Matthew Lehner ASIAA

TÜBİTAK National Observatory (TUG)

arxiv: v1 [astro-ph.im] 31 Jul 2014

Problem Solving. radians. 180 radians Stars & Elementary Astrophysics: Introduction Press F1 for Help 41. f s. picture. equation.

A Calibration Method for Wide Field Multicolor. Photometric System 1

Astronomical Techniques

Current Status of Chinese Virtual Observatory

Measuring Radial Velocities of Low Mass Eclipsing Binaries

TrES Exoplanets and False Positives: Finding the Needle in the Haystack

Why Use a Telescope?

V551 Aur, an oea binary with g-mode pulsations?

LCO Global Telescope Network: Operations and policies for a time-domain facility. Todd Boroson

Astronomy. Optics and Telescopes

Exoplanets in Ondrejov ground based support of space missions first results Petr Kabáth ING, La Palma 05 September 2018

Photo: Sean Goebel, IfA CFHT status update

Search for Transiting Planets around Nearby M Dwarfs. Norio Narita (NAOJ)

Rapid instrument exchanging system for the Cassegrain focus of Lijiang 2.4-m Telescope

Spectroscopy. Stephen Eikenberry (U. Florida) Dunlap Institute Summer School 26 July 2017

Thai National Telescope Call for Observing Proposals Cycle 2: November 2014-April 2015

Spectroscopy. Stephen Eikenberry (U. Florida) Dunlap Institute Summer School 25 July 2018

Remote Observing with HdA/MPIA's 50cm Telescope

Exoplanetary Science in Australia: Detection, Characterisation, and Destruction Rob Wittenmyer

Upgraded Photometric System of The 85-cm Telescope at Xinglong Station

Extrasolar Planet Science with High-Precision Astrometry Johannes Sahlmann

Photometric Observations of the δ Scuti Star UV Trianguli and its Evolutionary Status

The Kunlun Infrared Sky Survey (KISS) with AST3-NIR Camera. Jessica Zheng

ADVANCED CCD PHOTOMETRY AND EXOPLANET TRANSIT PHOTOMETRY. By : Kenny A. Diaz Eguigure

Telescopes. A Warm Up Exercise. A Warm Up Exercise. A Warm Up Exercise. A Warm Up Exercise. Key Ideas:

Optical system of the Three Antarctic Survey Telescopes

Optical system of the Three Antarctic Survey Telescopes

High contrast imaging at 3-5 microns. Philip M. Hinz University of Arizona Matt Kenworthy, Ari Heinze, John Codona, Roger Angel

Searching for Other Worlds

NPOI Current Status and Recent Science

Astronomical frequency comb for calibration of low and medium resolution spectrographs

Optics and Telescope. Chapter Six

Discovery of a deep, low mass ratio overcontact binary GSC

Antarctic Infrared Telescope (AIR-T) and its Scientific Drivers

Future Robotic observatory on Mountain Vidojevica: site and equipment specification

Exoplanets Direct imaging. Direct method of exoplanet detection. Direct imaging: observational challenges

Pan-Planets with PANSTARRS1. And : CfA, John Hopkins Uni., UK Consortium, Centr. Uni. Taiwan

Optical/NIR Spectroscopy A3130. John Wilson Univ of Virginia

PLATO Follow-up. Questions addressed. Importance of the follow-up. Importance of the follow-up. Organisa(on*&*Progress*Report

arxiv:astro-ph/ v1 26 Nov 2004

PIRATE The Winnower. Jakub Bochinski Open University

Reduction procedure of long-slit optical spectra. Astrophysical observatory of Asiago

The GMT Consortium Large Earth Finder. Sagi Ben-Ami Smithsonian Astrophysical Observatory

Astro 1010 Planetary Astronomy Sample Questions for Exam 3

YETI Search for young transiting planets

GMACS: The Wide-Field, Multi-Object Spectrograph for the Giant Magellan Telescope. Jennifer Marshall Texas A&M University

Astronomical Experiments for the Chang E-2 Project

The VLT dealing with the Atmosphere, a Night Operation point of view

Giant Magellan Telescope Project Byeong-Gon Park Korea Astronomy and Space Science Institute

Apache Point Observatory

Millimagnitude Accuracy Photometry of Extra solar Planets Transits using Small Telescopes

CASE/ARIEL & FINESSE Briefing

Discovery of a deep, low mass ratio overcontact binary GSC

Outline. RV Planet Searches Improving Doppler Precision Population Synthesis Planet Formation Models Eta-Earth Survey Future Directions

High-contrast Coronagraph Development in China for Direct Imaging of Extra-solar Planets

Optical/IR Observational Astronomy Spectroscopy. David Buckley, SALT

Collaborative Site Testing in West China,

Transcription:

The Telescopes and Activities on Exoplanet Detection in China ZHOU Xu National Astronomical Observatories

Cloudage

Xinglong Station of National Astronomical Observatories Altitude:~900M; Weather:220 clear nights; 100 photometric nights. Distance to Beijing:150km,2 hours by car; Number of the telescopes:9

The first director of Beijing Observatory, CHENG Maolin, in Xinglong for site testing in 1965

Xinglong Station in Constraction in 1966

Xinglong Station in 2000

Xinglong Station in 2007

2.16M Telescope Cassegrain focus f/9 Coude focus f/45 Fist light in 1989

80CM Telescope 85CM Telescope Long period variation Short period Variation

BATC photometric system Telescope: 60/90 cm f/3 Schmidt CCD: E2V 4096x4096 Blue sensitive 12um/pixel Filters: 15 intermediate bands The field of view: 94x94 arcmin^2

SDSS filters (u, g, r, I, z)

We participate the 1 st and 3 rd observation of Tr37 in August and September of 2010. There 10 nights successful observation obtained about 81Gb of image data with exposure time of 10s in R band.

Current Status and Future Prospects of Exoplanet Search at Xinglong Gang ZHAO 趙剛 National Astronomical Observatories Chinese Academy of Sciences

East-Asian Planet Search Network (EAPSNET) Okayama 1.88m tel., Japan 300 GK giants (V<6), since 2001 10 planets and 1 brown dwarf Xinglong 2.16m tel. & Okayama 100 GK giants (V~6), since 2005 (1 planet and 1 brown dwarf) Bohyunsan 1.8m tel. & Okayama 140 GK giants (V<6.5), since 2005 1 brown dwarf Subaru 8.2m tel., Japan & EAPSNET >200 GK giants (6.5<V<7), since 2006 Several candidates TUBITAK 1.5m tel., Turkey 50 GK giants (V~6.5), since 2008 Goal: ~100 planets from 1000 stars

EAPS-NET - China Since 2005 2.16m with I 2 V ~ 6 m late giants R~40000 100 targets

Observable Nights on Planet Search Project 39 nights were allocated in 2010

The first result of the China-Japan joint planet search project 28 points, 3 years 18 points, 2 years Liu et al. ApJ, 2008, 672,553 The third brown dwarfs around intermediate mass stars

One planet around HD173416 Liu et al. RAA, 2009, 9, L1

New Spectrograph for 2.16m Thanks to NIAOT colleagues, a new spectrograph has been installed on Xinglong 2.16m telescope this month. Fiber feed (2 fibers, 2.4 /1.6 ) R: 32,000~115,000/48,000~115,000 4k x 4k CCD. Full optical band coverage (370-1050nm) Thermal & vibration control

Chinese Antarctic Astronomy in Dome A

Chinese Small Telescope Array CSTAR 4 15cm small telescopes, 1Kx1K CCD, 20 square degrees view, in South Pole area; SDSS g, r, i filter s for 3 telescopes and one open; 4 monthes continue observation; Exposure time 20 30 second.

CSTAR

A Image from CSTAR

An Extra Solar Planet?

A Binary!

LiJiang Exoplanet Tracker (LiJET) WANG Tinggui consortium: University of Science and Technology of China (USTC), Yunnan Astronomical Observatory (YNAO), Nanjing University (NJU),University of Florida (UF) LiJiang TTL 2.4m robotic telescope

Final Mechanical Layout of LiJET 4kx4k CCD camera Prism Echelle Collimator /camera Input fiber feed Interferometer

LiJET inside an Airtight Chamber in a Thermal Enclosure Thermal enclosure Vacuum chamber Air legs The thermal enclosure dimension: 69" x 45" x 39.9". 34 Thermal stability, ~1 mk over a short time and ~3mK over a long time

LiJET Design Parameters Name RV Mode Direct Echelle Fiber core diameter 72 m 50 m Fiber input focal ratio f/4 same Image size on sky (arcsec) 1.55 1.07 Fiber output focal ratio f/4 same Collimator beam diameter 80 mm 80 mm Camera focal ratio f/4 same Wavelength coverage 390-700 nm 390-1000 nm Main disperser 87 l/mm R2 echelle same Cross-disperser 45 degree PBM2Y prism same Resolution elements 4.8 pixels 3.3 pixels Spectral resolution 18,000 27,000 CCD detector 4kx4k with 15 m pixels same 35

Throughput Telescope 81%(primary and secondary) Fiber feed 60% Interferometer Slit 95% Collimator Echelle efficiency 75% Camera Total throughput 18% 66%(double output including lenses and folders) 94% (4 lenses and 6 surfaces) 85% (8 lenses, 14 surfaces)

M p (M ) RV sensitivity for planet search V=10 V=8 V=6 a p (AU) LiJET planet-detection sensitivity for 15 min exposures, total 60 observations in 3 years; Short period Super-earth/Neptune planets in bright stars; Jupiter-like planets for stars with V=12

Schedule Instrument Commissioning: Dec 2010 Science verification: Jan-July 2011 Science observation: Oct. 2011 --- USA EXPERT Spain SET China LiJET

Summery There are many small telescopes can be used for Exoplanet observation by proposal; There exist some project about Exoplanet observation; We are interest in multi-site observation of Exoplanet in cooperation.

THANKS!