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Equations 4 and 5 depict the two constraints for the optimization, which respectively stand for the following: (1) The total gained bandwidth of each requester shall not exceed its high layer requirement.
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However, the relatively narrow Raman gain bandwidth only allows for amplification or generation of a single wavelength channel.
The presented antenna has a good gain, bandwidth, VSWR and axial ratio bandwidth.
Aperture efficiency of the proposed reflectarray is 37% and its 1-dB gain bandwidth is 4.1%.
The Gain Bandwidth Product (GBW) has been analyzed from the frequency response of the circuit.
We compute globally optimal trade-off curves relating performance measures such as power dissipation, unity-gain bandwidth, and open-loop gain.
The 1-dB gain bandwidth is up to 9.6% around 9.8 GHz with 56.3% of radiation efficiency.
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By optimizing the amplifier parameters, when FOPA attains low gain-saturation, the FOPA has a higher gain, a broader flat gain bandwidth and a lower noise figure.
However, with the enhancement of gain-saturation the parametric gain decreases, the flat gain bandwidth becomes narrow and the noise figure also increases.
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