activity
20102015
most citedThe effect of defect layer on transmissivity and light field distribution in general function photonic crystals

20 citations · 61 across the 10 of their papers we have counts for

collaborators

13 papers

physics.optics2015

Quantum effect of one-dimensional photonic crystal

Xiang-Yao Wu, Ji Ma, Xiao-Jing Liu +5

In this paper, we have studied the quantum transmission characteristics of one-dimensional photonic crystal with and without defect layer by the quantum theory approach, and compar…

quant-ph2013

Full Quantum Theory of Double-slit Diffraction

Xiang-Yao Wu, Ji Ma, Bo-Jun Zhang +7

In this paper, we apply the full new method of quantum theory to study the double-slit diffraction of molecules. We calculate the double-slit wave functions of ${C_{60}}…

quant-ph2013

Quantum theory of light double-slit diffraction

Xiang-Yao Wu, Hong Li, Bo-Jun Zhang +8

In this paper, we study the light double-slit diffraction experiment with quantum theory approach. Firstly, we calculate the light wave function in slits by quantum theory of photo…

physics.optics2012★ 20 cited

The effect of defect layer on transmissivity and light field distribution in general function photonic crystals

Xiang-Yao Wu, Si-Qi Zhang, Bo-Jun Zhang +5

We have theoretically investigated a general function photonic crystals (GFPCs) with defect layer, and choose the line refractive index function for two mediums and , and an…

physics.optics2012★ 15 cited

Light field distribution of general function photonic crystals

Xiang-Yao Wu, Bo-Jun Zhang, Xiao-Jing Liu +5

In this paper, We have presented a new general function photonic crystals (GFPCs), which refractive indexes are line functions of space position in two mediums and , and obt…

physics.optics2012

An optical diode and magnifier from a general function photonic crystals

Xiang-Yao Wu, Bo-Jun Zhang, Xiao-Jing Liu +5

We have presented a new general function photonic crystals (GFPCs), which refractive index is a function of space position. Based on Fermat principle, we achieve the motion equatio…