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Further, experiments confirm the existence of a small gap. Low-temperature magnetization studies of 1 found the lower critical field to be near 2.5 tesla, indicating a gap energy of approximately 1.5 K. In addition, inelastic neutron scattering experiments on a partially deuterated crystal of 1 found an energy gap near 4 K. The range of experimental values for the gap is not yet understood.
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Further, experiments confirm the existence of a small gap. Low-temperature magnetization studies of 1 found the lower critical field to be near 2.5 tesla, indicating a gap energy of approximately 1.5 K. In addition, inelastic neutron scattering experiments on a partially deuterated crystal of 1 found an energy gap near 4 K. The range of experimental values for the gap is not yet understood.
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