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Field-induced parameters of re-entrant magnets and concentrated spin glasses
Authors:E M Jackson  S B Liao and S M Bhagat

M A Manheimer

Affiliation:

Department of Physics and Astronomy, University of Maryland, College Park, MD 20742, USA

Laboratory for Physical Science, College Park, MD 20740, USA

Abstract:We have used electron spin resonance measurements to derive the temperature and frequency dependences of the field-induced magnetization M(T, f)] and anisotropy field Han (T)] in a number of amorphous alloys belonging to the series (FepNi1−p)75P16B6Al3. In re-entrant (p > pc, the critical concentration for ferromagnetism) alloys at hi gh frequencies (f = 35 GHz, field ≈ 12 kOe) M reduces as T3/2 at high T and as T below ≈ 40 K, the deviation from T3/2 becoming more marked as pp+c. For p close to pc, lowering the frequency first causes the TImage term to increase and ultimately ( ≈ 4 GHz) changes the variation of M with T to that discovered previously for concentrated spin glasses, namely M is constant at low T and drops linearly at high temperatures. For the re-entrants, the results are interpreted on the basis of a model which invokes an energy gap in the spin-wave spectrum, introduces a non-zero density of states of the gap energy and takes into consideration a low-q cut-off in the spin-wave integral in thelow-T (less, approximateT) regime.In the concentrated spin glasses M (0) - M (T)]/ M (0) is well represented by the function exp (Δ / T) - 1]-1, where Δ has values close to the corresponding Curie-Weiss temperatures θp but much larger than the respective spin glass transition temperatures TSG. The temperature dependence of Han is largely given by the function (1 - T/T*), where T* is equal to the zero-field freezing temperature for the re-entrants and TSG for the spin glasses, respectively.
Keywords:
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