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Towards the First Silicon Laser || Strain Compensated Si/Sige Quantum Cascade Emitters Grown On Sige Pseudosubstrates

✍ Scribed by Pavesi, Lorenzo; Gaponenko, Sergey; Negro, Luca


Book ID
120507451
Publisher
Springer Netherlands
Year
2003
Tongue
English
Weight
665 KB
Edition
1
Category
Article
ISBN
9401001499

No coin nor oath required. For personal study only.

✦ Synopsis


Silicon, the leading material in microelectronics during the last four decades, also promises to be the key material in the future. Despite many claims that silicon technology has reached fundamental limits, the performance of silicon microelectronics continues to improve steadily. The same holds for almost all the applications for which Si was considered to be unsuitable. The main exception to this positive trend is the silicon laser, which has not been demonstrated to date. The main reason for this comes from a fundamental limitation related to the indirect nature of the Si band-gap. In the recent past, many different approaches have been taken to achieve this goal: dislocated silicon, extremely pure silicon, silicon nanocrystals, porous silicon, Er doped Si-Ge, SiGe alloys and multiquantum wells, SiGe quantum dots, SiGe quantum cascade structures, shallow impurity centers in silicon and Er doped silicon. All of these are abundantly illustrated in the present book.


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