High resolution spectroscopy (the finest being 0.01 cm(-1)) was applied in the 75-25 000 cm(-1) and 9-300 K ranges to a 1 mol% holmium doped YPO4 single crystal with two purposes: (1) to study the hyperfine splitting of Ho3+ energy levels of interest for possible quantum manipulation media and (2) to analyze the electron-phonon interaction. The hyperfine structure was clearly revealed for a high number of lines in a wide wavenumber range (up to similar to 21 500 cm(-1)) and for a large number of multiplets. Several hyperfine patterns were monitored, differing in the number of components (a maximum of 16 could be easily distinguished in a single beautiful pattern), in their separation, and in their relative statistical weight. These features...
We use high-frequency electron paramagnetic resonance (EPR) and high-resolution optical Fourier spec...
The aim of the paper is to investigate the hyperfine structure, to identify the hyperfine transition...
© the Partner Organisations 2014. We study paramagnetic Ho3+ centers in CaWO4, a promising material ...
High resolution spectroscopy (the finest being 0.01 cm-1) was applied in the 75–25 000 cm-1 and 9–3...
High-resolution spectroscopy (as fine as 0.01 cm−1) was applied to a 1 mol % holmium-doped single cr...
Crystal field absorption and emission spectra originated by 5I8->5F5 transitions, due to Ho3+ (1% mo...
We report on a high-resolution optical and magneto-optical spectroscopy, luminescence, and electron ...
© 2019 American Physical Society. We report on a high-resolution optical and magneto-optical spectro...
© 2019 American Physical Society. We report on a high-resolution optical and magneto-optical spectro...
© 2019 American Physical Society. We have investigated the hyperfine structure in high-resolution br...
© 2019 American Physical Society. We have investigated the hyperfine structure in high-resolution br...
The field dependence of the hyperfine splitting of Ho3+ in yttrium ethylsulphate has been studied by...
© the Partner Organisations 2014. We study paramagnetic Ho3+ centers in CaWO4, a promising material ...
Rare-earth-doped crystals can be attractive materials for quantum information processing, because of...
Rare-earth-doped crystals can be attractive materials for quantum information processing, because of...
We use high-frequency electron paramagnetic resonance (EPR) and high-resolution optical Fourier spec...
The aim of the paper is to investigate the hyperfine structure, to identify the hyperfine transition...
© the Partner Organisations 2014. We study paramagnetic Ho3+ centers in CaWO4, a promising material ...
High resolution spectroscopy (the finest being 0.01 cm-1) was applied in the 75–25 000 cm-1 and 9–3...
High-resolution spectroscopy (as fine as 0.01 cm−1) was applied to a 1 mol % holmium-doped single cr...
Crystal field absorption and emission spectra originated by 5I8->5F5 transitions, due to Ho3+ (1% mo...
We report on a high-resolution optical and magneto-optical spectroscopy, luminescence, and electron ...
© 2019 American Physical Society. We report on a high-resolution optical and magneto-optical spectro...
© 2019 American Physical Society. We report on a high-resolution optical and magneto-optical spectro...
© 2019 American Physical Society. We have investigated the hyperfine structure in high-resolution br...
© 2019 American Physical Society. We have investigated the hyperfine structure in high-resolution br...
The field dependence of the hyperfine splitting of Ho3+ in yttrium ethylsulphate has been studied by...
© the Partner Organisations 2014. We study paramagnetic Ho3+ centers in CaWO4, a promising material ...
Rare-earth-doped crystals can be attractive materials for quantum information processing, because of...
Rare-earth-doped crystals can be attractive materials for quantum information processing, because of...
We use high-frequency electron paramagnetic resonance (EPR) and high-resolution optical Fourier spec...
The aim of the paper is to investigate the hyperfine structure, to identify the hyperfine transition...
© the Partner Organisations 2014. We study paramagnetic Ho3+ centers in CaWO4, a promising material ...