We applied the high-field ESR technique to study the field-dependent behavi
or of two quantum spin chains. In the half-integer(S = 1/2) antiferromagnet
Cu-benzoate, we observed rather unusual temperature- and field-dependences
of the shift and width of the resonance line. These results are discussed
in the context of the recent theoretical description by Oshikawa and Afflec
k, which predicts, for this compound, the opening of a field-induced energy
gap at low temperature, For the integer (S = 1) antiferromagnet Ni(C5H14N2
)(2)N-3(ClO4), we observed various ESR modes both in the nonmagnetic Haldan
e phase (N < H-c) and in the magnetic high-field phase (H > H-o) where H-c
is the critical field at which the Haldane gap closes. From the frequency-f
ield diagram and the temperature dependence of the signal intensity, we dis
cuss the possible origin of these ESR modes, (C) 2000 Elsevier Science B.V.
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