We present an extensive study of the oxyborate material Co(5)Ti(O(2)BO(3))(2) using x-ray, magnetic, and thermodynamic measurements. This material belongs to a family of oxyborates known as ludwigites which presents low-dimensional subunits in the form of three leg ladders in its structure. Differently from previously investigated ludwigites the present material does not show long-range magnetic order although it goes into a spin-glass state at low temperatures. The different techniques employed in this paper allow for a characterization of the structure, the nature of the low-energy excitations and the magnetic anisotropy of this system. Its unique magnetic behavior is discussed and compared with those of other magnetic ludwigites
International audienceThe comparison of Fe3BO5 and Fe2MnBO5 reveals that the 2Fe(2+) Fe3+ charge ord...
International audienceThe comparison of Fe3BO5 and Fe2MnBO5 reveals that the 2Fe(2+) Fe3+ charge ord...
International audienceThe comparison of Fe3BO5 and Fe2MnBO5 reveals that the 2Fe(2+) Fe3+ charge ord...
We present an extensive study of the oxyborate material Co(5)Ti(O(2)BO(3))(2) using x-ray, magnetic,...
We present an extensive study of the structural, magnetic, and thermodynamic properties of the oxybo...
We present an extensive study of the structural, magnetic, and thermodynamic properties of the two h...
We present an extensive study of the structural, magnetic, and thermodynamic properties of the two h...
We present an extensive study of the structural, magnetic and thermodynamic properties of the two he...
Needle-shape single crystals of Co5/3Nb1/3BO4 warwickite were grown using the flux technique. X-ray ...
The magnetic structures of Fe3BO5 and Co3BO5 ludwigites have been studied experimentally by magnetic...
Needle-shape single crystals of Mn2.25Co0.75BO5 ludwigite were synthesized by the flux technique and...
There are two known ludwigites containing a single transition metal element, Fe3O2BO3 and Co3O2BO3. ...
International audienceThere are two known ludwigites containing a single transition metal element, F...
We present an investigation of the magnetic properties of the ludwigite Ni2FeO2BO3. This material is...
International audienceThe comparison of Fe3BO5 and Fe2MnBO5 reveals that the 2Fe(2+) Fe3+ charge ord...
International audienceThe comparison of Fe3BO5 and Fe2MnBO5 reveals that the 2Fe(2+) Fe3+ charge ord...
International audienceThe comparison of Fe3BO5 and Fe2MnBO5 reveals that the 2Fe(2+) Fe3+ charge ord...
International audienceThe comparison of Fe3BO5 and Fe2MnBO5 reveals that the 2Fe(2+) Fe3+ charge ord...
We present an extensive study of the oxyborate material Co(5)Ti(O(2)BO(3))(2) using x-ray, magnetic,...
We present an extensive study of the structural, magnetic, and thermodynamic properties of the oxybo...
We present an extensive study of the structural, magnetic, and thermodynamic properties of the two h...
We present an extensive study of the structural, magnetic, and thermodynamic properties of the two h...
We present an extensive study of the structural, magnetic and thermodynamic properties of the two he...
Needle-shape single crystals of Co5/3Nb1/3BO4 warwickite were grown using the flux technique. X-ray ...
The magnetic structures of Fe3BO5 and Co3BO5 ludwigites have been studied experimentally by magnetic...
Needle-shape single crystals of Mn2.25Co0.75BO5 ludwigite were synthesized by the flux technique and...
There are two known ludwigites containing a single transition metal element, Fe3O2BO3 and Co3O2BO3. ...
International audienceThere are two known ludwigites containing a single transition metal element, F...
We present an investigation of the magnetic properties of the ludwigite Ni2FeO2BO3. This material is...
International audienceThe comparison of Fe3BO5 and Fe2MnBO5 reveals that the 2Fe(2+) Fe3+ charge ord...
International audienceThe comparison of Fe3BO5 and Fe2MnBO5 reveals that the 2Fe(2+) Fe3+ charge ord...
International audienceThe comparison of Fe3BO5 and Fe2MnBO5 reveals that the 2Fe(2+) Fe3+ charge ord...
International audienceThe comparison of Fe3BO5 and Fe2MnBO5 reveals that the 2Fe(2+) Fe3+ charge ord...