Muonium is a combination of first- and second-generation matter formed by the electrostatic interaction between an electron and an antimuon (μ+). Although a well-known physical system, their ability to form collective excitations in molecules had not been observed. Here, we give evidence for the detection of a muonium state that propagates in a molecular semiconductor lattice via thermally activated dynamics: a muonium polaron. By measuring the temperature dependence of the depolarization of the muonium state in C60, we observe a thermal narrowing of the hyperfine distribution that we attribute to the dynamics of the muonium between molecular sites. As a result of the time scale for muonium decay, the energies involved, charge and spin sele...
Spin-polarized muons can be implanted in various molecular magnetic materials in order to measure st...
We report on the first example of quantum coherence between the spins of muons and quadrupolar nucle...
Although muons are primarily regarded as a local spin probe, they can also access the charge state o...
We thank the Engineering and Physical Sciences Research Council (EPSRC UK) for support via Grants No...
Positive muons injected into solid C60, K4C60, and K6C60 form vacuumlike muonium (μ+e-) with a (6–12...
AbstractIn insulators and semiconductors, the positive muon can bind an electron to form a muonium a...
Spin polarized muons are widely known as extremely sensitive local probes of magnetism. Muon spin ro...
μSR studies of crystalline C₆₀ reveal the existence of two distinct paramagnetic states. The experim...
The assignment of muon spin rotation spectra to muonium counterparts of hydrogen shallow-donor state...
By means of muon spin relaxation measurements we unraveled the temperature spin dynamics in monodisp...
By means of muon spin relaxation measurements we unraveled the temperature spin dynamics in monodisp...
We present the results of a muon-spin relaxation (mu+SR) study of magnetic order in the quasi-one-di...
We report on the first example of quantum coherence between the spins of muons and quadrupolar nucle...
Muonium centers are readily formed in a wide variety of insulators and semiconductors due to enormou...
Muonium can be regarded as an isotopic analogue of the hydrogen atom, with a positive muon replacing...
Spin-polarized muons can be implanted in various molecular magnetic materials in order to measure st...
We report on the first example of quantum coherence between the spins of muons and quadrupolar nucle...
Although muons are primarily regarded as a local spin probe, they can also access the charge state o...
We thank the Engineering and Physical Sciences Research Council (EPSRC UK) for support via Grants No...
Positive muons injected into solid C60, K4C60, and K6C60 form vacuumlike muonium (μ+e-) with a (6–12...
AbstractIn insulators and semiconductors, the positive muon can bind an electron to form a muonium a...
Spin polarized muons are widely known as extremely sensitive local probes of magnetism. Muon spin ro...
μSR studies of crystalline C₆₀ reveal the existence of two distinct paramagnetic states. The experim...
The assignment of muon spin rotation spectra to muonium counterparts of hydrogen shallow-donor state...
By means of muon spin relaxation measurements we unraveled the temperature spin dynamics in monodisp...
By means of muon spin relaxation measurements we unraveled the temperature spin dynamics in monodisp...
We present the results of a muon-spin relaxation (mu+SR) study of magnetic order in the quasi-one-di...
We report on the first example of quantum coherence between the spins of muons and quadrupolar nucle...
Muonium centers are readily formed in a wide variety of insulators and semiconductors due to enormou...
Muonium can be regarded as an isotopic analogue of the hydrogen atom, with a positive muon replacing...
Spin-polarized muons can be implanted in various molecular magnetic materials in order to measure st...
We report on the first example of quantum coherence between the spins of muons and quadrupolar nucle...
Although muons are primarily regarded as a local spin probe, they can also access the charge state o...