High-sensitivity semiconductor optically preamplified 25 GHz receiver

P. Helm, M. Dagenais, M. Krainak, R. Leavitt
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引用次数: 1

Abstract

High-sensitivity, high-speed optical receivers are important components for both high-bit rate and microwave modulated optical systems. Optically preamplified receivers circumvent the gain-bandwidth limitation of APD receivers and have demonstrated improved receiver sensitivity in optical fiber systems at data rates up to 10 Gbit/s. In order to obtain maximum sensitivity, an optically preamplified receiver must be optical amplifier noise limited rather than thermal noise limited. Operation in this regime is more difficult to achieve at higher frequencies, however, due to reduced detector quantum efficiency and higher electronic receiver noise. We demonstrate an optically preamplified receiver comprised of a semiconductor optical amplifier (SOA) and 25 GHz Schottky InGaAs photodiode operating at the SOA noise limit. Because of the broadband, low-responsivity of this photodiode, these results apply over its entire spectral range (400-1600 nm), subject to SOA availability, as well as to operation at frequencies up to 120 GHz.
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高灵敏度半导体光学预放大25ghz接收机
高灵敏度、高速光接收机是高比特率和微波调制光学系统的重要组成部分。光预放大接收器规避了APD接收器的增益带宽限制,并在数据速率高达10 Gbit/s的光纤系统中证明了提高的接收器灵敏度。为了获得最大的灵敏度,光学预放大接收机必须限制光放大器噪声,而不是限制热噪声。然而,由于探测器量子效率的降低和电子接收器噪声的增加,在更高的频率下,这种操作更难实现。我们演示了一个由半导体光放大器(SOA)和25 GHz肖特基InGaAs光电二极管组成的光预放大接收器,工作在SOA噪声限制下。由于该光电二极管的宽带、低响应性,这些结果适用于其整个光谱范围(400-1600 nm),受SOA可用性的影响,以及在高达120 GHz的频率下工作。
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