Cr is not an acceptor in 𝛽−Ga 2 O 3
The intensity of red Cr 3+ photoluminescence (PL) in monoclinic gallium oxide (𝛽−Ga 2 O 3 ) is suppressed by 𝑛-type conductivity, an effect that has been attributed to a Cr deep acceptor level in the bandgap. In 𝑛-type material, such an acceptor level would be occupied, resulting in the Cr 2+ oxidation state and the absence of Cr 3+ PL. To test this model, 𝑛-type 𝛽−Ga 2 O 3 crystals co-doped with Cr and Zr (a donor) were grown from the melt. The samples show Cr 3+ optical absorption bands and a high free-electron concentration of 4 × 10 18 cm −3 . If Cr were an acceptor, then it would be fully compensated and therefore would not exhibit the Cr 3+ optical signature. Hybrid functional calculations indicate that Cr occupies the substitutional octahedral Ga(II) site and that the Cr 2+ state is energetically unfavorable, i.e., Cr is not an acceptor. Weak Cr 3+ PL was observed in the Cr/Zr co-doped samples. In conclusion, the quenching of PL may be caused by a transfer of energy to free electrons, a nonradiative process that would reduce the emission intensity.