High-energy resolution spectroscopic studies of quantum magnets proved extremely valuable in accessing magnetodynamics quantities, such as energy barriers, magnetic interactions, and lifetime of excited states. Here, we investigate a previously unexplored flavor of low-energy spin excitations for quantum spins coupled to an electron bath. In sharp contrast to the usual tunneling signature of two steps symmetrically centered around the Fermi level, we find a single step in the conductance. Combining time-dependent and many-body perturbation theories, magnetic field-dependent tunneling spectra are explained as the result of an interplay between weak magnetic anisotropy energy, magnetic interactions, and Stoner-like electron-hole excitations t...
We study the response of the magnetization to a time-dependent applied magnetic field H(t) in a mode...
We theoretically study low dimensional insulating spin systems using spin fluctuations as a probe of...
Kondo effects in individual atoms, molecular magnets or quantum dotshave received a lot of attention...
High–energy resolution spectroscopic studies of quantum magnets proved extremely valuable in accessi...
The fascinating many-body physics involved in the interaction of a single magnetic impurity with the...
Quantum spin tunneling and Kondo effect are two very different quantum phenomena that produce the sa...
A wide class of nanomagnets shows striking quantum behaviour, known as quantum spin tunnelling (QST)...
Designing and characterizing the many-body behaviors of quantum materials represents a prominent cha...
Quantum entanglement permeates the complex ground states of correlated electron materials defying si...
We present a theory of the elementary spin excitations in transition-metal ferromagnet nanoparticles...
The manner in which localized spins interact in magnetic insulators is a strongly correlated many-bo...
Here, I present a theoretical study, based on non-equilibrium quantum statistical mechanics and on t...
Physics at the level of an atom is dominated by laws of quantum mechanics. Often, this is entangled ...
The response of the magnetization to a time-dependent applied magnetic field in single-spin models f...
Many-body phenomena are paramount in physics. In condensed matter, their hallmark is considerable on...
We study the response of the magnetization to a time-dependent applied magnetic field H(t) in a mode...
We theoretically study low dimensional insulating spin systems using spin fluctuations as a probe of...
Kondo effects in individual atoms, molecular magnets or quantum dotshave received a lot of attention...
High–energy resolution spectroscopic studies of quantum magnets proved extremely valuable in accessi...
The fascinating many-body physics involved in the interaction of a single magnetic impurity with the...
Quantum spin tunneling and Kondo effect are two very different quantum phenomena that produce the sa...
A wide class of nanomagnets shows striking quantum behaviour, known as quantum spin tunnelling (QST)...
Designing and characterizing the many-body behaviors of quantum materials represents a prominent cha...
Quantum entanglement permeates the complex ground states of correlated electron materials defying si...
We present a theory of the elementary spin excitations in transition-metal ferromagnet nanoparticles...
The manner in which localized spins interact in magnetic insulators is a strongly correlated many-bo...
Here, I present a theoretical study, based on non-equilibrium quantum statistical mechanics and on t...
Physics at the level of an atom is dominated by laws of quantum mechanics. Often, this is entangled ...
The response of the magnetization to a time-dependent applied magnetic field in single-spin models f...
Many-body phenomena are paramount in physics. In condensed matter, their hallmark is considerable on...
We study the response of the magnetization to a time-dependent applied magnetic field H(t) in a mode...
We theoretically study low dimensional insulating spin systems using spin fluctuations as a probe of...
Kondo effects in individual atoms, molecular magnets or quantum dotshave received a lot of attention...