A periodic soliton train in a zero-temperature holographic superfluid has two elastic modes and one gapless phonon mode; standard quantization develops an instability above a critical chemical potential while alternative quantization remains stable.
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Dynamical behaviour of soliton train in holographic superfluids at zero temperature
A periodic soliton train in a zero-temperature holographic superfluid has two elastic modes and one gapless phonon mode; standard quantization develops an instability above a critical chemical potential while alternative quantization remains stable.