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PHOTONIC CRYSTAL SURFACE-EMITTING LASERS ENABLED BY AN ACCIDENTAL DIRAC POINT

机译:通过偶然的狄拉克点实现的光子晶体表面激光

摘要

A photonic-crystal surface-emitting laser (PCSEL) includes a gain medium electromagnetically coupled to a photonic crystal whose energy band structure exhibits a Dirac cone of linear dispersion at the center of the photonic crystal's Brillouin zone. This Dirac cone's vertex is called a Dirac point; because it is at the Brillouin zone center, it is called an accidental Dirac point. Tuning the photonic crystal's band structure (e.g., by changing the photonic crystal's dimensions or refractive index) to exhibit an accidental Dirac point increases the photonic crystal's mode spacing by orders of magnitudes and reduces or eliminates the photonic crystal's distributed in-plane feedback. Thus, the photonic crystal can act as a resonator that supports single-mode output from the PCSEL over a larger area than is possible with conventional PCSELs, which have quadratic band edge dispersion. Because output power generally scales with output area, this increase in output area results in higher possible output powers.
机译:光子晶体表面发射激光器(PCSEL)包括电磁耦合到光子晶体的增益介质,该光子晶体的能带结构在光子晶体的布里渊区的中心具有线性色散的狄拉克锥。该狄拉克锥的顶点称为狄拉克点。因为它位于布里渊区中心,所以称为偶然狄拉克点。调整光子晶体的能带结构(例如,通过更改光子晶体的尺寸或折射率)以显示偶然的狄拉克点,可将光子晶体的模间距增加几个数量级,并减少或消除光子晶体的面内反馈。因此,与具有平方带边缘色散的常规PCSEL相比,光子晶体可以充当谐振器,在更大的面积上支持PCSEL的单模输出。因为输出功率通常随输出面积成比例,所以输出面积的这种增加会导致更高的可能输出功率。

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