Research on Microwave Oscillator Based on Cryogenically Cooled Sapphire Cavity
Author:
Publisher
Springer Singapore
Link
http://link.springer.com/content/pdf/10.1007/978-981-10-4594-3_50
Reference16 articles.
1. Hartnett JG, Nand NR (2010) Ultra-low vibration pluse-tube cryocooler stabilized cryogenic sapphire oscillator with 10-16 fractional frequency stability. IEEE Trans Microwave Theory Tech 10:1–8
2. Tobar ME, Hartnett JG, Ivanov EN et al (2000) Cryogenically cooled sapphire-rutile dielectric resonators for ultrahigh-frequency stable oscillators for terrestrial and space applications. IEEE Trans Microwave Theory Tech 48:1265–1269
3. Vitusevich SA, Schieber K, Ghosh IS et al (2003) Design and characterization of an all-cryogenic low phase-noise sapphire K-band oscillator for satellite communication. IEEE Trans Microwave Theory Tech 51:163–169
4. Dick GJ, Saunders J (1990) Measurement and analysis of a microwave oscillator stabilized by a sapphire dielectric ring resonator for ultra-low noise. IEEE Trans Ultrason Ferroelectr Freq Control 37:339–346
5. Tobar ME, Mann AG (1991) Resonant frequencies of higher order modes in cylindrical anisotropic dielectric resonators. IEEE Trans Microwave Theory Tech 39:2077–2082
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