Course : Εισαγωγή στη Ραδιοστρονομία
Course code : PH338C
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Display all units
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Introduction: What is radio astronomy
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Radiation mechanisms in the radio window
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Propagation through plasmas and the interstellar medium
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Antennas, beams, and single-dish observing
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Receivers, backends, digitization, and RFI
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Spectral-line radio astronomy
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Polarization and magnetic fields
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Pulsars and pulsar timing
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Transients, FRBs, surveys, and time-domain radio astronomy
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Interferometry I: the fundamental idea
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Interferometry II: calibration and imaging
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VLBI, astrometry, geodesy, and extreme angular resolution
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High-frequency radio astronomy: ALMA, sub-mm astronomy, and the EHT
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SETI, technosignatures, future facilities
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Introduction: What is radio astronomy
Pulsars and pulsar timing
Lecture topics
Neutron-star basics. Pulsar emission phenomenology. Periodicity searches, folding, dedispersion, acceleration searches, single-pulse searches. Timing models: spin, astrometry, binary motion, dispersion variations, clock corrections, barycentering. Timing residuals. Applications: neutron-star masses, tests of gravity, ISM studies, pulsar timing arrays and nanohertz gravitational waves.
Key concepts
Pulse profile, TOA, ephemeris, timing residual, DM variations, binary parameters, PTA.