COMPOUND SEMICONDUCTOR DEVICE AND METHOD FOR MANUFACTURING THE SAME
The AlGaN/GaN HEMT includes, on an SiC substrate, a laminated compound semiconductor structure and a gate electrode formed on the laminated compound semiconductor structure, wherein a p-type impurity (Mg) and oxygen (O) localize in a lower region of the laminated compound semiconductor structure aligned with the gate electrode, to such a depth as to cause part of a two-dimensional electron gas generated in the laminated compound semiconductor structure to disappear.
1 . A compound semiconductor device, comprising:
a laminated compound semiconductor structure; and
an electrode formed on the laminated compound semiconductor structure,
wherein a p-type impurity localizes in a lower region of the laminated compound semiconductor structure aligned with the electrode, to such a depth as to cause part of a two-dimensional electron gas generated in the laminated compound semiconductor structure to disappear.
2 . The compound semiconductor device according to claim 1 , wherein the p-type impurity and oxygen localize in the lower region of the laminated compound semiconductor structure aligned with the electrode, to such a depth as to cause part of a two-dimensional electron gas generated in the laminated compound semiconductor structure to disappear.
3 . The compound semiconductor device according to claim 1 , further comprising an insulating film formed between the laminated compound semiconductor structure and the electrode.
4 . The compound semiconductor device according to claim 3 , wherein the insulating film is a compound layer of the p-type impurity used as a thermal diffusion source of the p-type impurity.
5 . The compound semiconductor device according to claim 1 , wherein the p-type impurity is one of Mg and Be.
6 . A method for manufacturing a compound semiconductor device, the method comprising:
forming a p-type impurity-doped compound layer in a region on a laminated compound semiconductor structure where an electrode is to be formed; and
heat-treating the compound layer to diffuse the p-type impurity of the compound layer to such a depth as to cause part of a two-dimensional electron gas generated in the laminated compound semiconductor structure to disappear.
7 . The method for manufacturing a compound semiconductor device according to claim 6 , wherein the compound layer formed so as to cover an upper portion of the laminated compound semiconductor structure is wet-etched to leave the compound layer in the region where an electrode is to be formed.
8 . The method for manufacturing a compound semiconductor device according to claim 6 , wherein a protective film is formed so as to cover the compound layer, and the heat treatment is performed with the compound layer covered with the protective film.
9 . The method for manufacturing a compound semiconductor device according to claim 6 , further comprising:
subsequent to the heat treatment, removing the compound layer; and
forming a gate electrode in the region where an electrode is to be formed.
10 . The method for manufacturing a compound semiconductor device according to claim 6 , further comprising:
subsequent to the heat treatment, forming a gate electrode on the compound layer.
11 . The method for manufacturing a compound semiconductor device according to claim 6 , wherein the p-type impurity is one of Mg and Be.
12 . A power-supply unit comprising a transformer, and a high-voltage circuit and a low-voltage circuit with the transformer therebetween, wherein the high-voltage circuit includes a transistor including:
a laminated compound semiconductor structure; and
an electrode formed on the laminated compound semiconductor structure,
wherein a p-type impurity localizes in a lower region of the laminated compound semiconductor structure aligned with the electrode, to such a depth as to cause part of a two-dimensional electron gas generated in the laminated compound semiconductor structure to disappear.