124 citations · 168 across the 27 of their papers we have counts for
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Universal quantum computing with thermal state bosonic systems
Kevin Marshall, Daniel F. V. James, Alexandru Paler +1
Recent development of mixed-state encoding (MSE) allows pure-state logical information to be encoded by a bosonic (continuous-variable) system in mixed physical state. Despite inte…
Faster manipulation of large quantum circuits using wire label reference diagrams
Alexandru Paler, Austin Fowler, Robert Wille
Large scale quantum computing is highly anticipated, and quantum circuit design automation needs to keep up with the transition from small scale to large scale problems. Methods to…
On the Influence of Initial Qubit Placement During NISQ Circuit Compilation
Alexandru Paler
Noisy Intermediate-Scale Quantum (NISQ) machines are not fault-tolerant, operate few qubits (currently, less than hundred), but are capable of executing interesting computations. A…
Controlling distilleries in fault-tolerant quantum circuits: problem statement and analysis towards a solution
Alexandru Paler
The failure susceptibility of the quantum hardware will force quantum computers to execute fault-tolerant quantum circuits. These circuits are based on quantum error correcting cod…
Skyrmion Logic System for Large-Scale Reversible Computation
Maverick Chauwin, Xuan Hu, Felipe Garcia-Sanchez +4
Computational reversibility is necessary for quantum computation and inspires the development of computing systems in which information carriers are conserved as they flow through…
NISQ circuit compilation is the travelling salesman problem on a torus
Alexandru Paler, Alwin Zulehner, Robert Wille
Noisy, intermediate-scale quantum (NISQ) computers are expected to execute quantum circuits of up to a few hundred qubits. The circuits have to conform to NISQ architectural constr…