PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

The Development of Solar Astronomy In Malaysia

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Monitoring the Sun reveals a variety of fascinating and complex physical phenomena which are being studied mainly by analyzing its emission. Solar activity has an impact with space weather. The characteristic features of the climate of Malaysia are uniform temperature, very high humidity and copious rainfall. It has an average of temperature of 26.7 ºC. Therefore, it is suitable to monitor the Sun. In following work, we will emphasize the development of solar astronomy in Malaysia. The ground based observation (i) optical and (ii) radio are the main region that we focused on. Optical observation has started earlier comparing with radio observation. In optical region it covers from 400 –700 nm while in radio region, we focus from 45 MHz to 870 MHz. The number of observatories is increasing. A dedicated work to understand the Sun activity in radio region is a part of an initiative of the United Nations together with NASA in order to support developing countries participating in „Western Science‟ research. Realize how important for us to keep doing a research about the solar bursts, by using the new radio spectrometer, CALLISTO (Compound Low Cost Low Frequency Transportable Observatories) spectrometer. Malaysia is one of the earliest country from South-East Asia (ASEAN) that involve this research. One of the advantages to start the solar monitoring in Malaysia is because our strategic location as equator country that makes possible to observing a Sun for 12 hours daily throughout a year. We strongly believe that Malaysia as one of contributor of solar activity data through E-CALLISTO network. This is a very good start for developing a radio astronomy in Malaysia. With the implementation of 45 MHz -870 MHz CALLISTO systems and development of solar burst monitoring network, a new wavelength regime is becoming available for solar radio astronomy. Overall, this article presents an overview of optical and radio astronomy in Malaysia. With the present level of the international collaboration, it is believed that the potential involvement of local and international scientist in solar astrophysics will increase.
Rocznik
Strony
46--55
Opis fizyczny
Bibliogr. 54 poz., rys.
Twórcy
autor
  • MARA University of Technology, 40450, Shah Alam, Selangor, Malaysia
  • Academy of Contemporary Islamic Studies (ACIS), MARA University of Technology, 40450, Shah Alam, Selangor, Malaysia
autor
  • Institute of Astrophysics, ETH, Zurich, Switzerland
Bibliografia
  • [1] S.M. White, Asian Journal of Physics 16 (2007) 189-207.
  • [2] J.S. Hey, S.J. Parsons, J.W. Phillips, Monthly Notices of the Royal Astronomical Society 108 (1948) 354-371.
  • [3] Z. Hamidi, U. Ibrahim, U.F. Salwa, Z. Abidin, Z. Ibrahim, N. Shariff, International Journal of Fundamental Physical Sciences 3 (2013).
  • [4] R. Tousey, The solar corona, in: M.J. Rycroft, S.K. Runcorn (Eds.), Space Research XIII, Proceedings, Akademie-Verlag, Berlin, Madrid, Spain, 10 – 24 May, 1972, pp. 713–730.
  • [5] N. Gopalswamy, A Global Picture of CMEs in the Inner Heliosphere, in: G. Poletto, Suess, S.T. (Ed.), Astrophysics and Space Science 2004, pp. 201–251.
  • [6] R.A. Howard, Sheeley Jr, N.R., Michels, D.J.m Koomen, M.J., J. Geophys. Res. 90 (1985) 8173-8191.
  • [7] O.C. St Cyr, S.P. Plunkett, D.J. Michels, S.E. Paswaters, M.J. Koomen, G.M. Simnett, B.J. Thompson, J.B. Gurman, R. Schwenn, D.F. Webb, E. Hildner, P.L. Lamy, J. Geophys. Res. 18 (2000) 169-186.
  • [8] R.M.E.a.H. Illing, A.J., J. Geophys. Res. 90 (1985) 275-282.
  • [9] Z. Hamidi, N. Shariff, Thermal Energy and Power Engineering 3 (2014).
  • [10] Z. Hamidia, Z. Abidina, Z. Ibrahima, N. Shariffa, C. Monsteinc, AIP Conf. Proc 1528 (2013) 55-60.
  • [11] Z.S. Hamidi, N. Anim, N.N.M. Shariff, Z.Z. Abidin, Z.A. Ibrahim, C. Monstein, Dynamical structure of solar radio burst type III as evidence of energy of solar flares, in: R.Shukor (Ed.), PERFIK 2012, American Institute of Physics, Malaysia, 2013, pp. 11-15.
  • [12] Z. Hamidi, N. Shariff, C. Monstein, W.W. Zulkifli, M. Ibrahim, N. Arifin, N. Amran, International Letters of Chemistry, Physics and Astronomy 8 (2014) 13-19.
  • [13] Z. Hamidi, N. Shariff, C. Monstein, Scenario of Solar Radio Burst Type III During Solar Eclipse on 14 th November 2012, (2014).
  • [14] Z. Hamidi, N. Shariff, C. Monstein, The Tendencies and Timeline of the Solar Burst Type II Fragmented, (2014). International Letters of Chemistry, Physics and Astronomy 19(1) (2014) 46-55
  • [15] Z. Hamidi, N. Shariff, The Propagation of An Impulsive Coronal Mass Ejections( CMEs) due to the High Solar Flares and Moreton Waves, (2014).
  • [16] Z. Hamidi, N. Shariff, C. Monstein, W.W. Zulkifli, M. Ibrahim, N. Arifin, N. Amran, International Letters of Chemistry, Physics and Astronomy 9 (2014) 8-15.
  • [17] Z. Hamidi, N. Shariff, C. Monstein, International Letters of Chemistry, Physics and Astronomy 13 (2014) 104-111.
  • [18] Z. Hamidi, Z. Ibrahim, Z. Abidin, M. Maulud, N. Radzin, N. Hamzan, N. Anim, N. Shariff, Designing and Constructing Log Periodic Dipole Antenna to Monitor Solar Radio Burst: e-Callisto Space Weather, (2012).
  • [19] Z.S.Hamidi, Z. Abidin, Z. Ibrahim, N. Shariff, C. Monstein, International Journal of Engineering Research and Development 3 (2012) 36-39.
  • [20] Z.S.Hamidi, N.M.Anim, N. N.S.Hakimi, N.Hamzan, A.Mokhtar, N.Syukri, S.Rohizat, I.Sukma, Z.A. Ibrahim, Z.Z.Abidin, N.N.M.Shariff, C.Monstein, International Journal of Fundamental Physical Sciences 2 (2012) 4.
  • [21] Z.S.Hamidi, N.N.M.Shariff, Evaluation of Signal to Noise Ratio (SNR) of Log Periodic Dipole Antenna (LPDA) Business Engineering and Industrial Applications Colloquium 2013, IEEE, Langkawi, Malaysia, 2013, pp. 434-438.
  • [22] N. Hashim, Z. Abidin, U. Ibrahim, R. Umar, M. Hassan, Z. Rosli, Z. Hamidi, Z. Ibrahim, Radio Astronomy in Malaysia: Current Status and Outreach Activities, Astronomical Society of the Pacific Conference Series, 2011, pp. 355.
  • [23] Z.S.Hamidi, Z.Z.Abidin, Z.A. Ibrahim, N.N.M. Shariff, AIP Conference Proceedings 1454 (2012) 43.
  • [24] Z.S.Hamidi, N.N.M.Shariff, R.Umar, Malaysia Thailand Journal of Physics 3 (2012) 6.
  • [25] Z.Z. Abidin, Radio Astronomy Research in Malaysia: Past, Present and Future., Proc. of Space Science and Communication, 2009, pp. 179-181.
  • [26] Z.S. Hamidi, N.N.M. Shariff, C. Monstein, The International Journal of Engineering 1 (2012) 3.
  • [27] Z.S.Hamidi, Z. Abidin, Z. Ibrahim, C. Monstein, N. Shariff, International Journal of Fundamental Physical Sciences 2 (2012) 32-34.
  • [28] Z. Hamidi, S. Chumiran, A. Mohamad, N. Shariff, Z. Ibrahim, N. Radzin, N. Hamzan, N. Anim, A. Alias, American Journal of Modern Physics 2 (2013).
  • [29] A.O. Benz, C. Monstein, H. Meyer, P.K. Manoharan, R. Ramesh, A. Altyntsev, A. Lara, J. Paez, K.-S. Cho, Earth Moon and Planets 104 (2009) 277-285.
  • [30] Z. Hamidi, N. Shariff, F.Z. Ulum, Z. Abidin, Z. Ibrahim, Time Series Analysis of Variance of Sunspots in January till September 2010 and Correlation with Sunspots Areas, International Journal of Astronomy 1 (2012) 101-104.
  • [31] A.O. Benz, C. Monstein, H. Meyers, CALLISTO, A New Concept for Solar Radio Spectrometer, Kluwer Academic Publishers, The Netherland, 2004.
  • [32] Z. HAmidi, N. Shariff, Z. Abidin, Z. Ibrahim, C. Monstein, Malaysian Journal of Scienceand Technology Studies 9 (2013) 15-22
  • [33] Z.S.Hamidi, Z. Abidin, Z. Ibrahim, N. Shariff, Indication of radio frequency interference (RFI) sources for solar burst monitoring in Malaysia, ICPAP 2011, AIP Publisher, Indonesia, 2012, pp. 6.
  • [34] Z.S. Hamidi, N.N.M. Shariff, Z.A. Ibrahim, Z.Z. Abidin, Solar studies in radio emissionand optical photometry, University of Malaya Publisher, 2013.
  • [35] Z. Hamidi, N. Shariff, C. Monstein, Z. Ibrahim, International Letters of Chemistry, Physics and Astronomy 7 (2014) 37-44.
  • [36] Z. Hamidi, N. Shariff, C. Monstein, Understanding Climate Changes in Malaysia Through Space Weather Study, International Letters of Natural Sciences (2014).
  • [37] F.-Y. Xu, Z.-C. Xu, G.-I.Y. Huang, M. Q.-J., X., H.-A. Wu, Solar Phys. 216 (2003).
  • [38] T. Kondo, T. Isobe, S. Igi, S. Watari, M. okumaru, J. Communications Res. Lab. 42 (1995).
  • [39] K. Jiricka, M. Karlicky, O. Kepka, A. Tlamicha, Solar Phys. 147 (1993).
  • [40] H.S. Sawant, e. al., Sol. Phys. 200 (2001).
  • [41] G. Mann, A. Klassen, Astron. Astrophys. 441 (2005) 319-326.
  • [42] Z.S. Hamidi, N. Shariff, Z. Abidin, Z. Ibrahim, C. Monstein, Middle-East Journal of Scientific Research 12 (2012) 6.
  • [43] Z. Hamidi, N. Shariff, C. Monstein, First Light Detection of A Single Solar Radio Burst Type III Due To Solar Flare Event, (2014).
  • [44] R. Umar, et. al., Middle East Journal of Scientific Research 14 (2013) 861-866.
  • [45] Z.S.Hamidi, N.N.M. Shariff, International Journal of Science and Mathematics 2 (2014) 3.
  • [46] Z. Hamidi, N. Shariff, C. Monstein, International Letters of Chemistry, Physics and Astronomy 10 (2014) 38-45.
  • [47] A.O. Benz, M. Guedel, H. Isliker, S. Miszkowicz, W. Stehling, Sol. Phys. 133 (1991) 385-393.
  • [48] Z. Hamidi, N. Shariff, C. Monstein, Statistical Study of Nine Months Distribution of Solar Flares, (2014).
  • [49] Z. Hamidi, N. Shariff, C. Monstein, Disturbances of Solar Eruption From Active Region AR1613, (2014).
  • [50] Z. Hamidi, N. Shariff, C. Monstein, International Letters of Chemistry, Physics and Astronomy 13 (2014) 144-154.
  • [51] R. Umar, Z.Z. Abidin, Z.A. Ibrahim, M.S.R. Hassan, Z. Rosli, Z.S. Hamidi, AIP Conference Proceedings 1454 (2012) 39.
  • [52] Z.S. Hamidi, Z.Z. Abidin, Z.A. Ibrahim, N.N.M. Shariff, U.F.S.U. Ibrahim, R. Umar, Preliminary analysis of investigation Radio Frequency Interference (RFI) profile analysis at Universiti Teknologi MARA, IEEE, 2011, pp. 311-313.
  • [53] N. Anim, Z. Hamidi, Z. Abidin, C. Monstein, N. Rohizat, Radio frequency interference affecting type III solar burst observations, 2012 NATIONAL PHYSICS CONFERENCE: (PERFIK 2012), American Institute of Physics, 2013, pp. 82-86
  • [54] Z. Hamidi, N. Shariff, Evaluation of signal to noise ratio (SNR) of log periodic dipole antenna (LPDA), Business Engineering and Industrial Applications Colloquium (BEIAC), 2013 IEEE, IEEE, 2013, pp. 434-438.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ffd4a677-823b-406c-b64a-9a0e8affd2ca
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.