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 inIEEE transactions on ultrasonics, ferroelectrics, and frequency control Vol. 42; no. 5; pp. 964 - 966
Main Authors Benz, S.P., Booi, P.A.A.
Format Journal Article
LanguageEnglish
Published New York, NY IEEE 01.09.1995
Institute of Electrical and Electronics Engineers
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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.< >
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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Issue 5
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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PublicationTitle IEEE transactions on ultrasonics, ferroelectrics, and frequency control
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References ref13
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larkin (ref8) 1968; 26
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  doi: 10.1016/0370-1573(84)90002-4
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  start-page: 1219
  year: 1968
  ident: ref8
  article-title: Radiation line width in the Josephson effect
  publication-title: Sov Phys JETP
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Snippet 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...
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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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