Almost a century ago, string states-complex bound states of magnetic excitations-were predicted to exist in one-dimensional quantum magnets(1). However, despite many theoretical studies(2-11), the experimental realization and identification of string states in a condensed-matter system have yet to be achieved. Here we use high-resolution terahertz spectroscopy to resolve string states in the antiferromagnetic Heisenberg-Ising chain SrCo2V2O8 in strong longitudinal magnetic fields. In the field-induced quantum-critical regime, we identify strings and fractional magnetic excitations that are accurately described by the Bethe ansatz(1,3,4). Close to quantum criticality, the string excitations govern the quantum spin dynamics, whereas the fract...
In this paper we investigate complex solutions of the Bethe equations in the two-particle sector, bo...
The ability to manipulate single atoms has opened up the door to constructing interesting and useful...
Magnetism is a subject that has fascinated mankind for countless generations. With the development ...
Almost a century ago, string states-complex bound states of magnetic excitations-were predicted to e...
We report a high-resolution terahertz spectroscopic study of quantum spin dynamics in the antiferrom...
Complex bound states of magnetic excitations, known as Bethe strings, were predicted almost a centur...
Recently there has been a renewed interest in the spectra and role in dynamical properties of excite...
We report on spectroscopy study of elementary magnetic excitations in an Ising-like antiferromagneti...
We report on spectroscopy study of elementary magnetic excitations in an Ising like antiferromagneti...
For quasi one dimensional quantum spin systems theory predicts the occurrence of a confinement of sp...
We report on high-resolution terahertz spectroscopic studies of quantum spin dynamics in the quasi-o...
The field of low-dimensional magnetism is one of the most active research areas in condensed matter ...
The appearance of one-dimensional strings of local excitations represents an interesting feature of ...
We study the fractionalization and confinement of excitations in two frustrated magnets: S = 1/2 ka...
Fractional magnetic excitations naturally emerge in one-dimensional spin chains. The search for frac...
In this paper we investigate complex solutions of the Bethe equations in the two-particle sector, bo...
The ability to manipulate single atoms has opened up the door to constructing interesting and useful...
Magnetism is a subject that has fascinated mankind for countless generations. With the development ...
Almost a century ago, string states-complex bound states of magnetic excitations-were predicted to e...
We report a high-resolution terahertz spectroscopic study of quantum spin dynamics in the antiferrom...
Complex bound states of magnetic excitations, known as Bethe strings, were predicted almost a centur...
Recently there has been a renewed interest in the spectra and role in dynamical properties of excite...
We report on spectroscopy study of elementary magnetic excitations in an Ising-like antiferromagneti...
We report on spectroscopy study of elementary magnetic excitations in an Ising like antiferromagneti...
For quasi one dimensional quantum spin systems theory predicts the occurrence of a confinement of sp...
We report on high-resolution terahertz spectroscopic studies of quantum spin dynamics in the quasi-o...
The field of low-dimensional magnetism is one of the most active research areas in condensed matter ...
The appearance of one-dimensional strings of local excitations represents an interesting feature of ...
We study the fractionalization and confinement of excitations in two frustrated magnets: S = 1/2 ka...
Fractional magnetic excitations naturally emerge in one-dimensional spin chains. The search for frac...
In this paper we investigate complex solutions of the Bethe equations in the two-particle sector, bo...
The ability to manipulate single atoms has opened up the door to constructing interesting and useful...
Magnetism is a subject that has fascinated mankind for countless generations. With the development ...