Glass structure, rigidity transitions and the intermediate phase in the Ge-As-Se ternary

Citation
Y. Wang et al., Glass structure, rigidity transitions and the intermediate phase in the Ge-As-Se ternary, EUROPH LETT, 52(6), 2000, pp. 633-639
Citations number
26
Categorie Soggetti
Physics
Journal title
EUROPHYSICS LETTERS
ISSN journal
02955075 → ACNP
Volume
52
Issue
6
Year of publication
2000
Pages
633 - 639
Database
ISI
SICI code
0295-5075(200012)52:6<633:GSRTAT>2.0.ZU;2-3
Abstract
The non-reversing heat flow, DeltaH(nr)(x) near T-g in ternary GexAsxSe1-2x glasses is examined by temperature-modulated differential scanning calorim etry. The DeltaH(nr)(x) term shows a deep minimum (which is almost zero) in the 0.09 < x < 0.14 range, identified with the intermediate phase, and an increase, both at low x (< 0.09) in the floppy phase and at high x (> 0.14) in the stressed rigid phase. Expressed in terms of mean coordination numbe r, (r) over bar = 2 + 3x, the large width, Delta(r) over bar = r(c)(1) - r( c)(2) = 0.15, of the intermediate phase and its low onset value r,(l) = 2.2 7 are shown to be consistent with the presence of Se = As(Se-1/2)(3) units in addition to pyramidal As(Se-1/2)(3) and tetrahedral Ge(Se-1/2)(4) units in the stress-free backbone. The vanishing of DeltaH(nr)(x) in the intermed iate phase is in harmony with the notion that the number of Lagrangian cons traints/atom exhausts the three available degrees of freedom, and leaves th e backbone in a mechanically stress-free state.