The search for radio emission from the exoplanetary systems 55 Cancri, $\upsilon$ Andromedae, and $\tau$ Bo\"{o}tis using LOFAR beam-formed observations
Jake D. Turner, Philippe Zarka, Jean-Mathias Grie{\ss}meier, Joseph, Lazio, Baptiste Cecconi, J. Emilio Enriquez, Julien N. Girard, Ray, Jayawardhana, Laurent Lamy, Jonathan D. Nichols, Imke de Pater

TL;DR
This study uses LOFAR observations to search for radio emissions from exoplanetary systems, tentatively detecting signals from Tau Boötis, which could indicate planetary magnetic fields, but further confirmation is needed.
Contribution
First low-frequency LOFAR beamformed observations targeting multiple exoplanetary systems, with tentative detection of radio signals from Tau Boötis suggesting planetary magnetic activity.
Findings
Tentative detection of circularly polarized emission from Tau Boötis at 14-21 MHz.
Possible planetary radio emission consistent with cyclotron maser mechanism.
No definitive signals detected from 55 Cancri and marginal from $ u$ Andromedae.
Abstract
Observing planetary auroral radio emission is the most promising method to detect exoplanetary magnetic fields, the knowledge of which will provide valuable insights into the planet's interior structure, atmospheric escape, and habitability. We present LOFAR-LBA circularly polarized beamformed observations of the exoplanetary systems 55 Cancri, Andromedae, and Bo\"{o}tis. We tentatively detect circularly polarized bursty emission from the Bo\"{o}tis system in the range 14-21 MHz with a flux density of 890 mJy and with a significance of 3. For this detection, no signal is seen in the OFF-beams, and we do not find any potential causes which might cause false positives. We also tentatively detect slowly variable circularly polarized emission from Bo\"{o}tis in the range 21-30 MHz with a flux density of 400 mJy and with a statistical…
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