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Stabilized microwave-frequency transfer using optical phase sensing and actuation (1705.01169v1)
Published 1 May 2017 in physics.ins-det and astro-ph.IM
Abstract: We present a stabilized microwave-frequency transfer technique that is based on optical phase-sensing and optical phase-actuation. This technique shares several attributes with optical-frequency transfer and therefore exhibits several advantages over other microwave-frequency transfer techniques. We demonstrated stabilized transfer of an 8,000 MHz microwave-frequency signal over a 166 km metropolitan optical fiber network, achieving a fractional frequency stability of 6.8x10-14 Hz/Hz at 1 s integration, and 5.0x10-16 Hz/Hz at 1.6x104 s. This technique is being considered for use on the Square Kilometre Array SKA1-mid radio telescope.