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Demonstration of a phase-lockable microwave to submillimeter wave sweeper

机译:演示可锁相微波至亚毫米波扫描器

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Abstract: The development of low-temperature-grown GaAs photomixers enables the construction of a microwave to submillimeter- wave source capable of large frequency sweeps. By utilizing semiconductor diode lasers to drive the photomixer, this source is all solid-state and compact, and has small power consumption. Frequency stabilization of the semiconductor diode lasers allows this source to be phase-locked to an external microwave reference. Two 805 nm extended-cavity- diode lasers are mixed in a low-temperature-grown GaAs photoconductive photomixer. The difference-frequency mixing product is radiated by a planar spiral antenna and collimated by a Si lens. This output is phase-locked to a microwave reference by downconverting it in a whisker- contacted Schottky-barrier diode harmonic mixer and using the output to offset-phase-lock one laser to the other. The photomixer output power is 300 nW at 200 GHz and 10 nW at 1.6 THz, as measured by a 4 K InSb bolometer calibrated with a methanol laser and a power meter at 526 and 812 GHz. !10
机译:摘要:低温生长的GaAs光混合器的发展使微波到亚毫米波源的构建成为可能,该源具有大频率扫描能力。通过利用半导体二极管激光器驱动光混合器,该光源全固态且紧凑,功耗小。半导体二极管激光器的频率稳定度允许该光源锁相到外部微波参考。在低温生长的GaAs光电导光混合器中混合了两个805 nm的长腔二极管激光器。差频混合产物通过平面螺旋天线辐射并通过Si透镜准直。通过在晶须接触的肖特基势垒二极管谐波混频器中将其下变频,然后使用该输出将一个激光器与另一个激光器偏置锁相,可以将该输出锁相至微波参考。光电混合器的输出功率在200 GHz时为300 nW,在1.6 THz时为10 nW,这是通过4 K InSb辐射热计(已用甲醇激光器校准)和功率计在526和812 GHz处测得的。 !10

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