If it s in the first state, and it falls out of the conduction band, it will release its extra energy as a photon.
如果是在第一形态,并且它逃离出了传导带,他会以光子的形式释放多余的能量。
Changing the Angle and length of the bonds between germanium atoms also changed the energies required to kick their electrons into the conduction band.
改变锗原子的连接角度和长度的同时,将它们的电子踢到传导带所需的能量也变化了。
The extra electron fills up the lower-energy state in the conduction band, causing excited electrons to, effectively, spill over into the higher-energy, photon-emitting state.
这个额外的电子填充了传导带的较低能级,有效的导致了被激发的电子溢入较高,释放光子的能级。
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