Quantum coherence, an essential feature of quantum mechanics allowing quantum superposition of states, is a resource for quantum information processing. Coherence emerges in a fundamentally different way for nonidentical and identical particles. For the latter, a unique contribution exists linked to indistinguishability that cannot occur for nonidentical particles. Here, we experimentally demonstrate this additional contribution to quantum coherence with an optical setup, showing that its amount directly depends on the degree of indistinguishability, and exploiting it in a quantum phase discrimination protocol. Furthermore, the designed setup allows for simulating fermionic particles with photons, thus assessing the role of exchange statist...
Quantifying coherence is an essential endeavour for both quantum foundations and quantum technologie...
A pair of quantum observables diagonal in the same “incoherent” basis can be measured jointly, so so...
A pair of quantum observables diagonal in the same “incoherent” basis can be measured jointly, so so...
Quantum coherence, an essential feature of quantum mechanics allowing quantum superposition of state...
Quantum coherence, an essential feature of quantum mechanics allowing quantum superposition of state...
Quantum coherence plays a fundamental and operational role in different areas of physics. A resource...
Quantum coherence plays a fundamental and operational role in different areas of physics. A resource...
Quantum coherence plays a fundamental and operational role in different areas of physics. A resource...
Quantum coherence plays a fundamental and operational role in different areas of physics. A resource...
Quantum coherence marks a deviation from classical physics, and has been studied as a resource for m...
Quantum coherence is an essential ingredient in quantum information processing and plays a central r...
Quantum coherence is an essential ingredient in quantum information processing and plays a central r...
A major signature of quantum mechanics beyond classical physics is coherence, the existence of super...
Quantifying coherence is an essential endeavour for both quantum foundations and quantum technologie...
The existence of fundamentally identical particles represents a foundational distinction between cla...
Quantifying coherence is an essential endeavour for both quantum foundations and quantum technologie...
A pair of quantum observables diagonal in the same “incoherent” basis can be measured jointly, so so...
A pair of quantum observables diagonal in the same “incoherent” basis can be measured jointly, so so...
Quantum coherence, an essential feature of quantum mechanics allowing quantum superposition of state...
Quantum coherence, an essential feature of quantum mechanics allowing quantum superposition of state...
Quantum coherence plays a fundamental and operational role in different areas of physics. A resource...
Quantum coherence plays a fundamental and operational role in different areas of physics. A resource...
Quantum coherence plays a fundamental and operational role in different areas of physics. A resource...
Quantum coherence plays a fundamental and operational role in different areas of physics. A resource...
Quantum coherence marks a deviation from classical physics, and has been studied as a resource for m...
Quantum coherence is an essential ingredient in quantum information processing and plays a central r...
Quantum coherence is an essential ingredient in quantum information processing and plays a central r...
A major signature of quantum mechanics beyond classical physics is coherence, the existence of super...
Quantifying coherence is an essential endeavour for both quantum foundations and quantum technologie...
The existence of fundamentally identical particles represents a foundational distinction between cla...
Quantifying coherence is an essential endeavour for both quantum foundations and quantum technologie...
A pair of quantum observables diagonal in the same “incoherent” basis can be measured jointly, so so...
A pair of quantum observables diagonal in the same “incoherent” basis can be measured jointly, so so...