|
Authors |
Program No. |
Title (link to full paper) |
|
Van Keuls, F.W |
EFA-01 |
A Ku-band HTS/Ferroelectric Thin Film/Dielectric Tunable Ring Resonator as the Stabilizing Element of a Discriminator-locked Oscillator |
|
Rao, M.R |
EFA-02 |
Novel Miniature Tunable Resonator using a Superconductor-Ferroelectric-Superconductor Thin Film |
|
Wooldridge, I |
EFA-03 |
Electrical tuning of passive HTS microwave devices |
|
Nurgaliev, T |
EFA-04 |
Modeling of Microwave Losses in HTSC Periodic Coplanar Waveguides |
|
Koh, K |
EFA-05 |
Fabrication of superconducting delay line with GaAs Schottky diode |
|
Dong-Chul Chung |
EFA-06 |
A Hybrid High-Tc Superconducting Phase Shifter on YBaCuO Thin Film |
|
Han, S.K |
EFA-07 |
Microwave Characteristics of Coplanar Waveguide Type Tunable Phase Shifter using YBCO/BSTO Thin Film |
|
Abelson, L.A |
EFB-01 |
Next Generation Nb Superconductor Integrated Circuit Process |
|
Bhat, A |
EFB-02 |
High Current Density Nb/Al-AlOx/Nb Josephson Junctions and their Implementation in a High Speed Digital Amplifier. |
|
Berggren, K.K |
EFB-03 |
|
|
Bass, R.B |
EFB-04 |
Machine-Aligned Fabrication of Submicron SIS Tunnel Junctions |
|
Huang, H.H |
EFB-05 |
Unexpected Geometrical Effects in the Fabrication of Nb/Al-oxide/Nb Junctions |
|
Patel, V |
EFB-06 |
|
|
Pavolotsky, A.B |
EFB-07 |
|
|
Dolata, R |
EFB-08 |
|
|
Radparvar, M |
EFB-09 |
Niobium Nitride-based Superconductor-Normal-Superconductor Junctions |
|
Wang, Z. |
EFB-10 |
|
|
Akaike, H |
EFB-11 |
Overdamped Niobium-nitride Junctions for 10 K Operation |
|
Kerber, G.L |
EFB-12 |
Characteristics of Junctions and Resistors Fabricated Using an All-NbN Superconductor Integrated Circuit Foundry Process |
|
Berggren, K. K. |
EFB-13 |
Low Tc Superconductive Circuits Fabricated on 150-mm-diameter Wafers Using a Doubly Planarized Nb/AlOx/Nb Process |
|
Kohjiro, S |
EFB-14 |
Fabrication of Niobium-Carbonitride Josephson Junctions on Magnesium-Oxide Substrates Using Chemical-Mechanical Polishing |
|
Kuriki, S |
EFC-01 |
Transmission Line High-Tc dc-SQUIDs |
|
Schultze, V |
EFC-02 |
Investigation of Multiple-SQUID Arrangements in Single Layer High Tc Magnetometers |
|
Zakosarenko, V |
EFC-03 |
Low-Noise Integrated SQUID Electronics Operating in Liquid Nitrogen |
|
Beyer, J |
EFC-04 |
Linearity of High-Tc SQUID Magnetometers |
|
Lee, S.G |
EFC-05 |
Second order SQUID gradiometer from single layer of superconducting film |
|
Jansman, A.B.M |
EFC-06 |
High-Tc dc slotted SQUID magnetometers |
|
Oh, B |
EFC-07 |
Directly Coupled High-Tc Superconducting Quantum Interference Devices with Narrow Linewidths. |
|
Leslie, K.E |
EFC-08 |
RF SQUIDs with Slots and Holes and Flux Dams |
|
Tilbrook, D.L |
EFC-09 |
Development of a practical RF SQUID probe with integrated HEMT Cryogenic Preamplifier |
|
Krämer, A |
EFC-10 |
Integrated and flip-chip magnetometers for biomagnetic applications |
|
Sheth, A.C |
EFC-11 |
Bench Scale Evaluation of Batch Mode Dip-Coating of Buffer and HTS Materials Followinghe Sol-Gel Scheme |
|
Espy, M.A. |
EFC-11 |
"Two methods for a first order hardware gradiometer using two HTS SQUIDs." |
|
Jeng, J.T. |
EFC-12 |
Characterization of Single Layered High-Tc SQUID Gradiometers with Washer-type Pick-up Coils |
|
Benz, S.P. |
EFD-01 |
|
|
Mancini, C.A. |
EFD-02 |
|
|
Zheng, L. |
EFD-03 |
20 GHz RSFQ Multiplexer and Demultiplexer |
|
Suzuki, M. |
EFD-04 |
An interface circuit for a Josephson-CMOS hybrid digital system |
|
Onomi, T. |
EFD-05 |
Implementation of phase-mode logic circuits based on new integration design |
|
Rott, P.V. |
EFD-06 |
MALTTOOL - an integrated design environment for superconducting digital circuits |
|
Tighe, T.S |
EFD-07 |
High Data Rate Testing of an Interface Chip for a Superconducting Crossbar Switch |
|
Johnson, M.W |
EFD-08 |
List of ASC 98 Technical Sessions
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