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Spencer D. T. et al. Integrated single and multi-layer Si3N4 platform for ultralow loss propagation and small bending radii.
A small bending along the full length of thoracic spine was also found.
From our computed results, it is seen that the bending radii exceeding 1 μm have negligibly small bending losses.
This allows configurations with small bending radii to be implemented, giving rise to high device compactness and potentially high responsivity.
The low-loss and compact devices with small bending radii are achieved with a new high-index waveguide design.
The considered beam is treated as a Bernoulli Euler beam in accordance with the small bending theory.
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However, these formulations take the results of small-scale bending tests as input parameters.
"We have that stereotypical view in our mind of that little old lady – small, bent up with rings falling off, and looking quite frail – that that's quite normal and it's normal to lose weight as you age.
If these holes are very small, bend a fine wire with a tiny hook on one end.
In addition, a long interfacial crack length appears to promote the fracture growth of ITO/SiN stacked layers under an ultra-small bending radius of 1 mm.
This is about one order of magnitude smaller than the smallest bending radius reported for OFETs without encapsulation.
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