Optical variability of radio-intermediate quasars

dc.contributor.authorGoyal, Arti
dc.contributor.authorKrishna, Gopal
dc.contributor.authorJoshi, S
dc.contributor.authoret
dc.date.accessioned2012-07-29T08:57:41Z
dc.date.available2012-07-29T08:57:41Z
dc.date.issued2009-10-08
dc.description.abstractWe report the results of our intensive intranight optical monitoring of 8 opti- cally bright ‘radio-intermediate quasars’ (RIQs) having flat or inverted radio spectra. The monitoring was carried out in R-band on 25 nights during 2005- 09. On each night only one RIQ was monitored for a minimum duration of ∼ 4 hours (the average being 5.2 hours per night). Using the CCD as an N-star photometer, an intranight optical variability (INOV) detection threshold of ∼ 1–2% was achieved for the densely sampled differential light curves (DLCs) de- rived from our data. These observations amount to a large increase over those reported hitherto for this rare and sparsely studied class of quasars which can, however, play an important role in understanding the link between the dominant varieties of powerful AGN, namely the radio-quiet quasars (RQQs), radio-loud quasars (RLQs) and blazars. Despite the probable presence of rela- tivistically boosted nuclear jets, inferred from their flat/inverted radio spectra, clear evidence for INOV in our extensive observations was detected only on one night. Also, flux variation between two consecutive nights was clearly seen for one of the RIQs. These results demonstrate that as a class, RIQs are much less extreme in nuclear activity compared to blazars. The availability in the literature of INOV data for another 2 RIQs conforming to our selection crite- ria allowed us to enlarge the sample to 10 RIQs (monitored on a total of 42 nights for a minimum duration of ∼ 4 hours per night). The absence of large 2 Goyal et al. amplitude INOV (ψ > 3%) persists in this enlarged sample. This extensive database has enabled us to arrive at the first estimate for the INOV Duty Cy- cle (DC) of RIQs. The DC is found to be small (∼ 9%), increasing to ∼ 14% if the two cases of ‘probable’ INOV are included. The corresponding value is known to be ∼ 60% for BL Lacs and ≈ 15% for both RLQs and RQQs, if they too are monitored for & 4 − 6 hours in each session. Our observations also provide information about the long-term optical variability (LTOV) of RIQs, which is found to be fairly common and reaches typical amplitudes of ≈ 0.1- mag. The light curves of these RIQs are briefly discussed in the context of a theoretical framework proposed earlier for linking this rare kind of quasars to the much better studied dominant classes of quasars.en_US
dc.identifier.urihttp://hdl.handle.net/11007/1862
dc.language.isoenen_US
dc.subjectGalaxies: activeen_US
dc.subjectGalaxies: jetsen_US
dc.subjectQuasars: generalen_US
dc.titleOptical variability of radio-intermediate quasarsen_US
dc.typeArticleen_US

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