Coherence of particles in form of matter waves is one of the basic properties of nature which distinguishes classical from quantum behavior. This is a direct consequence of the particle–wave dualism. It is the wave-like nature, which gives rise to coherence, whereas particle-like behavior results from decoherence. If two quantum objects are coherently coupled with respect to a particular variable, even over long distances, one speaks of entanglement. The study of entanglement is nowadays one of the most exciting research fields in physics with enormous impact on the most innovative development in information technology, the development of a future quantum computer. The loss of coherence by decoherence processes may occur due to momentum kic...
Quantum coherence plays a fundamental role in the study and control of ultrafast dynamics in matter....
The wave nature of particles is rarely observed, in part because of their very short de Broglie wave...
Entanglement is at the heart of many unusual and counterintuitive features of quantum mechanics. Onc...
Coherence of particles in form of matter waves is one of the basic properties of nature which distin...
Because of inversion symmetry and particle exchange, all constituents of homonuclear diatomic molecu...
Because of inversion symmetry and particle exchange, all constituents of homonuclear diatomic molecu...
The wave nature of particles is rarely seen in nature. One reason is their very short de Broglie wav...
Quantum coherence-induced effects in atomic and molecular systems are the basis of several proposals...
Abstract: Quantum coherence plays a fundamental role in the study and control of ultrafast dynamics ...
Because of inversion symmetry and particle exchange, all constituents of homonuclear diatomic molecu...
The coherence in quantum superposition states of protons (and chemically similar particles, the pos...
Photoionization using attosecond pulses can lead to the formation of coherent superpositions of the ...
We present an experimental investigation of symmetry breaking of H2 and D2 molecules after single ph...
The time evolution of anharmonic molecular wave packets is investigated under the influence of the e...
This chapter discusses three examples of quantum effects that can be observed in state-of-the-art ex...
Quantum coherence plays a fundamental role in the study and control of ultrafast dynamics in matter....
The wave nature of particles is rarely observed, in part because of their very short de Broglie wave...
Entanglement is at the heart of many unusual and counterintuitive features of quantum mechanics. Onc...
Coherence of particles in form of matter waves is one of the basic properties of nature which distin...
Because of inversion symmetry and particle exchange, all constituents of homonuclear diatomic molecu...
Because of inversion symmetry and particle exchange, all constituents of homonuclear diatomic molecu...
The wave nature of particles is rarely seen in nature. One reason is their very short de Broglie wav...
Quantum coherence-induced effects in atomic and molecular systems are the basis of several proposals...
Abstract: Quantum coherence plays a fundamental role in the study and control of ultrafast dynamics ...
Because of inversion symmetry and particle exchange, all constituents of homonuclear diatomic molecu...
The coherence in quantum superposition states of protons (and chemically similar particles, the pos...
Photoionization using attosecond pulses can lead to the formation of coherent superpositions of the ...
We present an experimental investigation of symmetry breaking of H2 and D2 molecules after single ph...
The time evolution of anharmonic molecular wave packets is investigated under the influence of the e...
This chapter discusses three examples of quantum effects that can be observed in state-of-the-art ex...
Quantum coherence plays a fundamental role in the study and control of ultrafast dynamics in matter....
The wave nature of particles is rarely observed, in part because of their very short de Broglie wave...
Entanglement is at the heart of many unusual and counterintuitive features of quantum mechanics. Onc...