Controlled Stark shifts in Er3+-doped crystalline and amorphous waveguides for quantum state storage
Optics Communications 266(2): 716-719
Article 2006 English
Authors
SH
Sara Hastings‐Simon
MS
M. U. Staudt
MA
Mikael Afzelius
Abstract
1 min read
We present measurements of the linear Stark effect on the 4I15/2
→
4I13/2 transition in an Er3+-doped proton-exchanged LiNbO3 crystalline waveguide and an Er3+-doped silicate fiber. The measurements were made using spectral hole burning techniques at temperatures below 4K. We measured an effective Stark coefficient (Δμ
e
χ)/(h)=25±1kHz/Vcm−1 in the crystalline waveguide and
(
Δ
μ
e
¯
χ
)
/
(
h
)
=
15
±
1
kHz/Vcm−1 in the silicate fiber. These results confirm the potential of erbium-doped waveguides for quantum state storage based on controlled reversible inhomogeneous broadening.
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