High-frequency oscillators using phase-locked arrays of Josephson junctions
We present a basic description of Josephson junctions and discuss their use as GHz and THz oscillators. The resistively shunted junction model is used to calculate the available power, linewidth, and operating frequency of the oscillators. We discuss how phase-locked arrays of junctions are used to...
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Published in | IEEE transactions on ultrasonics, ferroelectrics, and frequency control Vol. 42; no. 5; pp. 964 - 966 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
New York, NY
IEEE
01.09.1995
Institute of Electrical and Electronics Engineers |
Subjects | |
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Abstract | We present a basic description of Josephson junctions and discuss their use as GHz and THz oscillators. The resistively shunted junction model is used to calculate the available power, linewidth, and operating frequency of the oscillators. We discuss how phase-locked arrays of junctions are used to achieve higher power and narrower linewidth. Two experimental examples of phase-locked emission are shown: one from on-chip detection circuits at 150 GHz and one detected off-chip showing a 13-kHz linewidth at 88.8 GHz.< > |
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AbstractList | We present a basic description of Josephson junctions and discuss their use as GHz and THz oscillators. The resistively shunted junction model is used to calculate the available power, linewidth, and operating frequency of the oscillators. We discuss how phase-locked arrays of junctions are used to achieve higher power and narrower linewidth. Two experimental examples of phase-locked emission are shown: one from on-chip detection circuits at 150 GHz and one detected off-chip showing a 13-kHz linewidth at 88.8 GHz We present a basic description of Josephson junctions and discuss their use as GHz and THz oscillators. The resistively shunted junction model is used to calculate the available power, linewidth, and operating frequency of the oscillators. We discuss how phase-locked arrays of junctions are used to achieve higher power and narrower linewidth. Two experimental examples of phase-locked emission are shown: one from on-chip detection circuits at 150 GHz and one detected off-chip showing a 13-kHz linewidth at 88.8 GHz.< > |
Author | Booi, P.A.A. Benz, S.P. |
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Keywords | Shapiro step Frequency characteristic Experimental result Voltage current curve Josephson junction Emission Microwave oscillator Diode array Phase locking Superconductor device Signal detection Spectral line width |
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SubjectTerms | Acoustic transducers and frequency control Applied sciences Circuits Electronics Exact sciences and technology Ferroelectric materials ferroelectrics High temperature superconductors Josephson junctions Microwave oscillators Optical signal processing Phased arrays Semiconductor electronics. Microelectronics. Optoelectronics. Solid state devices Superconducting devices Ultrasonic transducers Ultrasonics |
Title | High-frequency oscillators using phase-locked arrays of Josephson junctions |
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