Nano-photonics in III-V semiconductors for integrated quantum optical circuits
وضعیت نشر و پخش و غیره
محل نشرو پخش و غیره
Cham
نام ناشر، پخش کننده و غيره
Springer
تاریخ نشرو بخش و غیره
2014
مشخصات ظاهری
نام خاص و کميت اثر
)xv, 129 pages( : illustrations )some in color(
فروست
عنوان فروست
Springer theses
یادداشتهای مربوط به مسئولیت معنوی اثر
متن يادداشت
This thesis breaks new ground in the physics of photonic circuits for quantum optical applications. The photonic circuits are based either on ridge waveguides or photonic crystals, with embedded quantum dots providing the single qubit, quantum optical emitters. The highlight of the thesis is the first demonstration of a spin-photon interface using an all-waveguide geometry, a vital component of a quantum optical circuit, based on deterministic single photon emission from a single quantum dot. The work makes a further important contribution to the field by demonstrating the effects and limitations that inevitable disorder places on photon propagation in photonic crystal waveguides, a further key component of quantum optical circuits. Overall the thesis offers a number of highly novel contributions to the field; those on chip circuits may prove to be the only means of scaling up the highly promising quantum-dot-based quantum information technology.
موضوع (اسم عام یاعبارت اسمی عام)
عنصر شناسه ای
، Nanophotonics
عنصر شناسه ای
، Semiconductors
عنصر شناسه ای
، Quantum optics
رده بندی کنگره
شماره رده
TA
نام شخص به منزله سر شناسه - (مسئولیت معنوی درجه اول )