In quantum information, complementarity of quantum mechanical observables plays a key role. The eigenstates of two complementary observables form a pair of mutually unbiased bases (MUBs). More generally, a set of MUBs consists of bases that are all pairwise unbiased. Except for specific dimensions of the Hilbert space, the maximal sets of MUBs are unknown in general. Even for a dimension as low as six, the identification of a maximal set of MUBs remains an open problem, although there is strong numerical evidence that no more than three simultaneous MUBs do exist. Here, by exploiting a newly developed holographic technique, we implement and test different sets of three MUBs for a single photon six-dimensional quantum state (a ‘‘qusix’’), en...
We present an experimental study of higher-dimensional quantum key distribution protocols based on m...
I present a series of experimental and theoretical advances in the field of quantum state estimation...
I present a series of experimental and theoretical advances in the field of quantum state estimation...
In quantum information, complementarity of quantum mechanical observables plays a key role. The eige...
In quantum information, complementarity of quantum mechanical observables plays a key role. The eige...
In quantum information, complementarity of quantum mechanical observables plays a key role. The eige...
Mutually unbiased bases (MUBs) play a key role in many protocols in quantum science, such as quantu...
We study sets of pure states in a Hilbert space of dimension d which are mu-tually unbiased (MU), th...
The concept of mutually unbiased bases is studied for N pairs of continuous variables. To find mutua...
Mutually unbiased bases for quantum degrees of freedom are central to all theoretical investi-gation...
Mutually unbiased bases (MUBs) play a key role in many protocols in quantum science, such as quantum...
Entanglement is a key resource in many quantum information schemes and in the last years the researc...
The temporal evolution of a quantum system can be characterized by quantum process tomography, a com...
Quantum measurements based on mutually unbiased bases (MUB) play crucial roles in foundational studi...
"The basic methods of constructing the sets of mutually unbiased bases in the Hilbert space of an ar...
We present an experimental study of higher-dimensional quantum key distribution protocols based on m...
I present a series of experimental and theoretical advances in the field of quantum state estimation...
I present a series of experimental and theoretical advances in the field of quantum state estimation...
In quantum information, complementarity of quantum mechanical observables plays a key role. The eige...
In quantum information, complementarity of quantum mechanical observables plays a key role. The eige...
In quantum information, complementarity of quantum mechanical observables plays a key role. The eige...
Mutually unbiased bases (MUBs) play a key role in many protocols in quantum science, such as quantu...
We study sets of pure states in a Hilbert space of dimension d which are mu-tually unbiased (MU), th...
The concept of mutually unbiased bases is studied for N pairs of continuous variables. To find mutua...
Mutually unbiased bases for quantum degrees of freedom are central to all theoretical investi-gation...
Mutually unbiased bases (MUBs) play a key role in many protocols in quantum science, such as quantum...
Entanglement is a key resource in many quantum information schemes and in the last years the researc...
The temporal evolution of a quantum system can be characterized by quantum process tomography, a com...
Quantum measurements based on mutually unbiased bases (MUB) play crucial roles in foundational studi...
"The basic methods of constructing the sets of mutually unbiased bases in the Hilbert space of an ar...
We present an experimental study of higher-dimensional quantum key distribution protocols based on m...
I present a series of experimental and theoretical advances in the field of quantum state estimation...
I present a series of experimental and theoretical advances in the field of quantum state estimation...