44 citations · 46 across the 4 of their papers we have counts for
6 papers · 1 filter
Quantum simulations of interacting systems with broken time-reversal symmetry
Yotam Shapira, Tom Manovitz, Nitzan Akerman +2
Many-body systems of quantum interacting particles in which time-reversal symmetry is broken give rise to a variety of rich collective behaviors, and are therefore a major target o…
A trapped ion quantum computer with robust entangling gates and quantum coherent feedback
Tom Manovitz, Yotam Shapira, Lior Gazit +2
Quantum computers are expected to achieve a significant speed-up over classical computers in solving a range of computational problems. Chains of ions held in a linear Paul trap ar…
Quantum simulations with complex geometries and synthetic gauge fields in a trapped ion chain
Tom Manovitz, Yotam Shapira, Nitzan Akerman +2
In recent years, arrays of atomic ions in a linear RF trap have proven to be a particularly successful platform for quantum simulation. However, a wide range of quantum models and…
Theory of robust multi-qubit non-adiabatic gates for trapped-ions
Yotam Shapira, Ravid Shaniv, Tom Manovitz +5
The prevalent approach to executing quantum algorithms on quantum computers is to break-down the algorithms to a concatenation of universal gates, typically single and two-qubit ga…
Quadrupole shift cancellation using dynamic decoupling
Ravid Shaniv, Nitzan Akerman, Tom Manovitz +2
We present a method that uses radio-frequency pulses to cancel the quadrupole shift in optical clock transitions. Quadrupole shifts are an inherent inhomogeneous broadening mechani…
Robust entanglement gates for trapped-ion qubits
Yotam Shapira, Ravid Shaniv, Tom Manovitz +2
High-fidelity two-qubit entangling gates play an important role in many quantum information processing tasks and are a necessary building block for constructing a universal quantum…