Methods of Laser, Non-Linear, and Fiber Optics in Studying Fundamental Problems of Astrophysics

被引:0
|
作者
P. G. Kryukov
机构
[1] Fiber Optics Research Center of RAS,
[2] Lebedev Physical Institute of RAS,undefined
来源
Astrophysical Bulletin | 2018年 / 73卷
关键词
techniques: spectroscopic; instrumentation: spectrograph;
D O I
暂无
中图分类号
学科分类号
摘要
Precise measurements of Doppler shifts of lines in stellar spectra allowing the radial velocity to be measured are an important field of astrophysical studies. A remarkable feature of the Doppler spectroscopy is the possibility to reliably measure quite small variations of the radial velocities (its acceleration, in fact) during long periods of time. Influence of a planet on a star is an example of such a variation. Under the influence of a planet rotating around a star, the latter demonstrates periodic motion manifested in the Doppler shift of the stellar spectrum. Precise measurements of this shift made it possible to indirectly discover planets outside the Solar system (exoplanets). Along with this, searching for Earth-type exoplanets within the habitable zone is an important challenge. For this purpose, accuracy of spectral measurements has to allow one to determine radial velocity variations at the level of centimeters per second during the timespans of about a year. Suchmeasurements on the periods of 10–15 years also would serve as a directmethod for determination of assumed acceleration of the Universe expansion. However, the required accuracy of spectroscopic measurements for this exceeds the possibilities of the traditional spectroscopy (an iodine cell, spectral lamps). Methods of radical improvement of possibilities of astronomical Doppler spectroscopy allowing one to attain the required measurement accuracy of Doppler shifts are considered. The issue of precise calibration can be solved through creating a system of a laser optical frequency generator of an exceptionally high accuracy and stability.
引用
收藏
页码:249 / 256
页数:7
相关论文
共 50 条
  • [21] FINITE-ELEMENT METHOD IN PROBLEMS OF NON-LINEAR OPTICS
    CHESNOKOV, SS
    EGOROV, KD
    KANDIDOV, VP
    VYSLOUKH, VA
    INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING, 1979, 14 (11) : 1581 - 1596
  • [22] ON BOUNDARY-PROBLEMS IN THE NON-LINEAR OPTICS OF RESONANT MEDIA
    RUPASOV, VI
    YUDSON, VI
    KVANTOVAYA ELEKTRONIKA, 1982, 9 (11): : 2179 - 2186
  • [23] ON A SET OF STANDARD PROGRAMS FOR SOLVING PROBLEMS OF NON-LINEAR OPTICS
    AMOSOV, AA
    BORISOV, AB
    VALEDINSKII, VD
    VLADIMIROV, MV
    ZHILEIKIN, YM
    ZLOTNIK, AA
    KUZMINA, MA
    USSR COMPUTATIONAL MATHEMATICS AND MATHEMATICAL PHYSICS, 1982, 22 (03): : 275 - 277
  • [24] Quantum cascade laser spectroscopy: diagnostics to non-linear optics
    Duxbury, Geoffrey
    Langford, Nigel
    Hay, Kenneth
    Tasinato, Nicola
    JOURNAL OF MODERN OPTICS, 2009, 56 (18-19) : 2034 - 2048
  • [25] Monitoring laser-tissue interaction by non-linear optics
    Tsai, Tsung-Hua
    Lee, Jin-Ning
    Chan, Jung-Yi
    Hsu, Jr-Ting
    Tan, Hsin-Yuan
    Dong, Chen-Yuan
    Lee, Woan-Ruoh
    Lin, Sung-Jan
    PHOTONIC THERAPEUTICS AND DIAGNOSTICS IV, 2008, 6842
  • [26] NON-LINEAR OPTICS AND SPECTROSCOPY
    BLOEMBERGEN, N
    REVIEWS OF MODERN PHYSICS, 1982, 54 (03) : 685 - 695
  • [27] NON-LINEAR OPTICS AND SPECTROSCOPY
    BLOEMBERGEN, N
    USPEKHI FIZICHESKIKH NAUK, 1982, 138 (02): : 185 - 203
  • [28] NON-LINEAR OPTICS IN AEROSOLS
    PALMER, AJ
    OPTICS LETTERS, 1980, 5 (02) : 54 - 55
  • [29] NON-LINEAR OPTICS IN MINERALOGY
    MEISNER, LB
    IZVESTIYA AKADEMII NAUK SSSR SERIYA GEOLOGICHESKAYA, 1981, (08): : 78 - 92
  • [30] NON-LINEAR OPTICS AND SPECTROSCOPY
    BLOEMBERGEN, N
    SCIENCE, 1982, 216 (4550) : 1057 - 1064