26 citations · 37 across the 5 of their papers we have counts for
6 papers
Practical implications of SFQ-based two-qubit gates
Mohammad Reza Jokar, Richard Rines, Frederic T. Chong
Scalability of today's superconducting quantum computers is limited due to the huge costs of generating/routing microwave control pulses per qubit from room temperature. One active…
DigiQ: A Scalable Digital Controller for Quantum Computers Using SFQ Logic
Mohammad Reza Jokar, Richard Rines, Ghasem Pasandi +5
The control of cryogenic qubits in today's superconducting quantum computer prototypes presents significant scalability challenges due to the massive costs of generating/routing th…
Systematic Crosstalk Mitigation for Superconducting Qubits via Frequency-Aware Compilation
Yongshan Ding, Pranav Gokhale, Sophia Fuhui Lin +3
One of the key challenges in current Noisy Intermediate-Scale Quantum (NISQ) computers is to control a quantum system with high-fidelity quantum gates. There are many reasons a qua…
Empirical determination of the simulation capacity of a near-term quantum computer
Rich Rines, Kevin Obenland, Isaac Chuang
Experimentally realizable quantum computers are rapidly approaching the threshold of quantum supremacy. Quantum Hamiltonian simulation promises to be one of the first practical app…
High Performance Quantum Modular Multipliers
Rich Rines, Isaac Chuang
We present a novel set of reversible modular multipliers applicable to quantum computing, derived from three classical techniques: 1) traditional integer division, 2) Montgomery re…
Parallel Position-Controlled Composite Quantum Logic Gates with Trapped Ions
Michael S. Gutierrez, Guang Hao Low, Richard Rines +1
We demonstrate parallel composite quantum logic gates with phases implemented locally through nanoscale movement of ions within a global laser beam of fixed pulse duration. We show…