Shyam Shankar
University of Texas at Austin, Yale University, Princeton University, Indian Institute of Technology, Kanpur
About
Shyam Shankar is an assistant professor in Electrical and Computer Engineering at the University of Texas at Austin. He received his B. Tech from Indian Institute of Technology, Kanpur in 2004 and his Ph.D. from Princeton University in 2010. From 2010 to 2019, he was a postdoctoral associate and subsequently a research scientist at Yale University in the group of Prof. Michel Devoret. Shankar is an expert in superconducting quantum circuits and has led a number of experiments that demonstrate the underlying principles for the design of large-scale quantum computers in this platform. These include a demonstration of rapid, high fidelity qubit measurement, the stabilization of quantum entanglement with feedback, the demonstration of modular remote entanglement of superconducting qubits, and the development of ultra-low-noise microwave amplifiers and non-reciprocal devices. He started the Quantum Circuits group at the University of Texas at Austin in fall 2019.
Employment
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University of Texas at Austin Assistant Professor2019 - Present
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Yale University Research scientist2016 - 2019
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Yale University Associate research scientist2014 - 2016
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Yale University Postdoctoral associate2010 - 2014
Education
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Princeton University Doctor of Philosophy2004 - 2010
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Indian Institute of Technology, Kanpur Bachelor of Technology2000 - 2004
Projects & Funding
Projects & funding information is unavailable.
Publications (50)
- Wireless Josephson parametric amplifier above 20 GHz Save
- Holographic Quantum Simulation of Strongly Correlated Electron Systems Save
- Optimizing the pump coupling for a three-wave-mixing Josephson parametric amplifier Save
- Kerr nonlinearity and parametric amplification with an Al-InAs superconductor–semiconductor Josephson junction Save
- Sequential quantum simulation of spin chains with a single circuit QED device Save
- Fully directional quantum-limited phase-preserving amplifier Save
- Josephson parametric amplifiers for rapid, high-fidelity measurement of solid-state qubits Save
- Quantum Microwave Radiometry with a Superconducting Qubit Save
- Quantum error correction of a qubit encoded in grid states of an oscillator Save
- Stabilization and operation of a Kerr-cat qubit Save