In order to delineate which minimalistic physical primitives can enable the full power of universal quantum computing, it has been fruitful to consider various measurement based architectures which reduce or eliminate the use of coherent unitary evolution, and also involve operations that are physically natural. In this context previous works had shown that the triplet-singlet measurement of two qubit angular momentum (or equivalently two qubit exchange symmetry) yields the power of quantum computation given access to a few additional different single qubit states or gates. However, Freedman, Hastings and Shokrian-Zini1 recently proposed a remarkable conjecture, called the ‘STP=BQP’ conjecture, which states that the two-qubit singlet/triple...
The quantum circuit model [1] envisions quantum information initialized in disjoint degrees of freed...
A single physical interaction might not be universal for quantum computation in general. It has been...
In complex time-consuming computations, we rarely have uninterrupted access to a high performance co...
We disprove the conjecture of [1], namely that it would require smarter authors to find a way of mak...
Quantum measurement is universal for quantum computation. Two models for performing measurement-base...
We first consider various methods for the indirect implementation of unitary gates. We apply these m...
We propose a universal gate set for quantum computing with all-to-all connectivity and intrinsic rob...
A two-level quantum system is the building block of a quantum computer. This pair of quantum states ...
Standard quantum computation is based on sequences of unitary quantum logic gates which process qubi...
Standard quantum computation is based on sequences of unitary quantum logic gates that process qubit...
We give a cheat sensitive protocol for blind universal quantum computation that is efficient in term...
What resources are universal for quantum computation? In the standard model, a quantum computer cons...
The ability to perform a universal set of quantum operations based solely on static resources and me...
Joint measurements of two-Pauli observables are a powerful tool for both the control and protection ...
We describe the application of four-qubit cluster states, built on the simultaneous entanglement of ...
The quantum circuit model [1] envisions quantum information initialized in disjoint degrees of freed...
A single physical interaction might not be universal for quantum computation in general. It has been...
In complex time-consuming computations, we rarely have uninterrupted access to a high performance co...
We disprove the conjecture of [1], namely that it would require smarter authors to find a way of mak...
Quantum measurement is universal for quantum computation. Two models for performing measurement-base...
We first consider various methods for the indirect implementation of unitary gates. We apply these m...
We propose a universal gate set for quantum computing with all-to-all connectivity and intrinsic rob...
A two-level quantum system is the building block of a quantum computer. This pair of quantum states ...
Standard quantum computation is based on sequences of unitary quantum logic gates which process qubi...
Standard quantum computation is based on sequences of unitary quantum logic gates that process qubit...
We give a cheat sensitive protocol for blind universal quantum computation that is efficient in term...
What resources are universal for quantum computation? In the standard model, a quantum computer cons...
The ability to perform a universal set of quantum operations based solely on static resources and me...
Joint measurements of two-Pauli observables are a powerful tool for both the control and protection ...
We describe the application of four-qubit cluster states, built on the simultaneous entanglement of ...
The quantum circuit model [1] envisions quantum information initialized in disjoint degrees of freed...
A single physical interaction might not be universal for quantum computation in general. It has been...
In complex time-consuming computations, we rarely have uninterrupted access to a high performance co...