6 pages, including 5 figuresInternational audienceQuantum dynamics is very sensitive to dimensionality. While two-dimensional electronic systems form Fermi liquids, one-dimensional systems—Tomonaga–Luttinger liquids—are described by purely bosonic excitations, even though they are initially made of fermions. With the advent of coherent single-electron sources, the quantum dynamics of such a liquid is now accessible at the single-electron level. Here, we report on time-of-flight measurements of ultrashort few-electron charge pulses injected into a quasi one-dimensional quantum conductor. By changing the confinement potential we can tune the system from the one-dimensional Tomonaga–Luttinger liquid limit to the multi-channel Fermi liquid and ...
Two- or three-dimensional metals are usually well described by weakly interacting, fermionic quasipa...
The strong fields associated with few-cycle pulses can drive highly nonlinear phenomena, allowing th...
International audienceWe study the decoherence and relaxation of a single elementary electronic exci...
6 pages, including 5 figuresInternational audienceQuantum dynamics is very sensitive to dimensionali...
Quantum dynamics is very sensitive to dimensionality. While two-dimensional electronic systems form ...
Over the past several decades, Luttinger-liquid theory has provided a framework for interacting elec...
In interacting one-dimensional (1D) systems, the quasi-particle picture in Fermi-liquid theory canno...
Over the past decade, an important effort has been made in the field of low dimensional electronic c...
Quantum-confined electrons in one-dimensional (1D) metals are described by a Luttinger liquid. The c...
Quantum-confined electrons in one-dimensional (1D) metals are described by a Luttinger liquid. The c...
Due to progress in nanotechnology high-quality quantum wires can nowadays be fabricated. The behavio...
Total 25 pages. 12 pages main text, 4 figures, 5 pages supplementary materialInternational audienceE...
© 2015 Nature Publishing Group Surface plasmons, collective oscillations of conduction electrons, ho...
Single-electron sources are an essential component of modern quantum nanoelectronic devices. Owing t...
Two- or three-dimensional metals are usually well described by weakly interacting, fermionic quasipa...
The strong fields associated with few-cycle pulses can drive highly nonlinear phenomena, allowing th...
International audienceWe study the decoherence and relaxation of a single elementary electronic exci...
6 pages, including 5 figuresInternational audienceQuantum dynamics is very sensitive to dimensionali...
Quantum dynamics is very sensitive to dimensionality. While two-dimensional electronic systems form ...
Over the past several decades, Luttinger-liquid theory has provided a framework for interacting elec...
In interacting one-dimensional (1D) systems, the quasi-particle picture in Fermi-liquid theory canno...
Over the past decade, an important effort has been made in the field of low dimensional electronic c...
Quantum-confined electrons in one-dimensional (1D) metals are described by a Luttinger liquid. The c...
Quantum-confined electrons in one-dimensional (1D) metals are described by a Luttinger liquid. The c...
Due to progress in nanotechnology high-quality quantum wires can nowadays be fabricated. The behavio...
Total 25 pages. 12 pages main text, 4 figures, 5 pages supplementary materialInternational audienceE...
© 2015 Nature Publishing Group Surface plasmons, collective oscillations of conduction electrons, ho...
Single-electron sources are an essential component of modern quantum nanoelectronic devices. Owing t...
Two- or three-dimensional metals are usually well described by weakly interacting, fermionic quasipa...
The strong fields associated with few-cycle pulses can drive highly nonlinear phenomena, allowing th...
International audienceWe study the decoherence and relaxation of a single elementary electronic exci...