Elo et al., 2019 - Google Patents
Broadband lumped-element Josephson parametric amplifier with single-step lithographyElo et al., 2019
View PDF- Document ID
- 9966027018949190820
- Author
- Elo T
- Abhilash T
- Perelshtein M
- Lilja I
- Korostylev E
- Hakonen P
- Publication year
- Publication venue
- Applied Physics Letters
External Links
Snippet
We present a lumped-element Josephson parametric amplifier (JPA) fabricated using a straightforward e-beam lithography process. Our strongly coupled flux-pumped JPA achieves a gain of 20 dB with a bandwidth of 95 MHz around 5 GHz, while the center …
- 238000001459 lithography 0 title description 3
Classifications
-
- H—ELECTRICITY
- H03—BASIC ELECTRONIC CIRCUITRY
- H03D—DEMODULATION OR TRANSFERENCE OF MODULATION FROM ONE CARRIER TO ANOTHER
- H03D7/00—Transference of modulation from one carrier to another, e.g. frequency-changing
- H03D7/14—Balanced arrangements
- H03D7/1408—Balanced arrangements with diodes
-
- H—ELECTRICITY
- H03—BASIC ELECTRONIC CIRCUITRY
- H03D—DEMODULATION OR TRANSFERENCE OF MODULATION FROM ONE CARRIER TO ANOTHER
- H03D9/00—Demodulation or transference of modulation of modulated electromagnetic waves
- H03D9/06—Transference of modulation using distributed inductance and capacitance
-
- H—ELECTRICITY
- H03—BASIC ELECTRONIC CIRCUITRY
- H03F—AMPLIFIERS
- H03F3/00—Amplifiers with only discharge tubes or only semiconductor devices as amplifying elements
- H03F3/189—High frequency amplifiers, e.g. radio frequency amplifiers
- H03F3/19—High frequency amplifiers, e.g. radio frequency amplifiers with semiconductor devices only
-
- H—ELECTRICITY
- H03—BASIC ELECTRONIC CIRCUITRY
- H03F—AMPLIFIERS
- H03F3/00—Amplifiers with only discharge tubes or only semiconductor devices as amplifying elements
- H03F3/60—Amplifiers in which coupling networks have distributed constants, e.g. with waveguide resonators
- H03F3/605—Distributed amplifiers
- H03F3/607—Distributed amplifiers using FET's
-
- H—ELECTRICITY
- H01—BASIC ELECTRIC ELEMENTS
- H01P—WAVEGUIDES; RESONATORS, LINES, OR OTHER DEVICES OF THE WAVEGUIDE TYPE
- H01P5/00—Coupling devices of the waveguide type
- H01P5/08—Coupling devices of the waveguide type for linking dissimilar lines or devices
- H01P5/10—Coupling devices of the waveguide type for linking dissimilar lines or devices for coupling balanced with unbalanced lines or devices
-
- H—ELECTRICITY
- H03—BASIC ELECTRONIC CIRCUITRY
- H03F—AMPLIFIERS
- H03F1/00—Details of amplifiers with only discharge tubes, only semiconductor devices or only unspecified devices as amplifying elements
- H03F1/08—Modification of amplifiers to reduce detrimental influences of internal impedances of amplifying elements
-
- H—ELECTRICITY
- H03—BASIC ELECTRONIC CIRCUITRY
- H03B—GENERATION OF OSCILLATIONS, DIRECTLY OR BY FREQUENCY-CHANGING, BY CIRCUITS EMPLOYING ACTIVE ELEMENTS WHICH OPERATE IN A NON-SWITCHING MANNER; GENERATION OF NOISE BY SUCH CIRCUITS
- H03B19/00—Generation of oscillations by non-regenerative frequency multiplication or division of a signal from a separate source
- H03B19/16—Generation of oscillations by non-regenerative frequency multiplication or division of a signal from a separate source using uncontrolled rectifying devices, e.g. rectifying diodes or Schottky diodes
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Planat et al. | Photonic-crystal Josephson traveling-wave parametric amplifier | |
Mutus et al. | Design and characterization of a lumped element single-ended superconducting microwave parametric amplifier with on-chip flux bias line | |
Vissers et al. | Low-noise kinetic inductance traveling-wave amplifier using three-wave mixing | |
Castellanos-Beltran et al. | Widely tunable parametric amplifier based on a superconducting quantum interference device array resonator | |
Mutus et al. | Strong environmental coupling in a Josephson parametric amplifier | |
Abdo et al. | Josephson amplifier for qubit readout | |
Chaudhuri et al. | Broadband parametric amplifiers based on nonlinear kinetic inductance artificial transmission lines | |
Bergeal et al. | Phase-preserving amplification near the quantum limit with a Josephson ring modulator | |
Ranzani et al. | Kinetic inductance traveling-wave amplifiers for multiplexed qubit readout | |
Sage et al. | Study of loss in superconducting coplanar waveguide resonators | |
Elo et al. | Broadband lumped-element Josephson parametric amplifier with single-step lithography | |
Bronn et al. | Broadband filters for abatement of spontaneous emission in circuit quantum electrodynamics | |
Grebel et al. | Flux-pumped impedance-engineered broadband Josephson parametric amplifier | |
Simoen et al. | Characterization of a multimode coplanar waveguide parametric amplifier | |
US10581394B2 (en) | Driving the common-mode of a Josephson parametric converter using a short-circuited coplanar stripline | |
Hover et al. | Superconducting low-inductance undulatory galvanometer microwave amplifier | |
Pogorzalek et al. | Hysteretic flux response and nondegenerate gain of flux-driven Josephson parametric amplifiers | |
Narla et al. | Wireless josephson amplifier | |
WO2020253292A1 (en) | Quantum parameter amplifier | |
Fadavi Roudsari et al. | Three-wave mixing traveling-wave parametric amplifier with periodic variation of the circuit parameters | |
Bockstiegel et al. | A tunable coupler for superconducting microwave resonators using a nonlinear kinetic inductance transmission line | |
Ezenkova et al. | Broadband SNAIL parametric amplifier with microstrip impedance transformer | |
Puebla-Hellmann et al. | Realization of gigahertz-frequency impedance matching circuits for nano-scale devices | |
Rashid et al. | Frequency multiplier based on distributed superconducting tunnel junctions: Theory, design, and characterization | |
Li et al. | Applying a direct current bias to superconducting microwave resonators by using superconducting quarter wavelength band stop filters |