Claims
- 1. A system for designing a periodically structured material, comprising:
- (A1) a simulation device having a memory which contains data representing property characteristic values of a periodically structured material generated by:
- (a) solving a Schrodinger equation for the periodically structured material with use of a period boundary condition of Born von Karman to find Bloch functions and energy values of the periodically structure material for each wave number vector thereof;
- (b) finding an overlap integral, S.sub.im =<.psi..sub.i (k.sub.B) .psi..sub.m (k.sub.A)>, for two adjacent wave number vectors, k.sub.A and k.sub.B ;
- (c) calculating a band array operation matrix: ##EQU17## (d) diagonalizing the band array operation matrix R.sub.mn ; and (e) finding, from an eigenvalue, .gamma..sub.p, and an eigenvector, U.sub.np which result from the diagonalization, Bloch functions in a one-to-one relation with two adjacent wave number vectors, k.sub.A and k.sub.B : ##EQU18## such that energy bands are in a one-to-one relation with the two adjacent.sub.-- wave number vectors; and
- f) determining property characteristic values of the periodically structured.sub.-- material from the energy bands; and
- (g) simulating the periodically structured material from the determined properly characteristic values.
- 2. The system as recited in claim 1, further comprising:
- an input receiving requisites for and characteristics of the periodically structured material;
- a display displaying data existing in said input or said simulation device; and
- a controller which controls data transfer among said input, said simulation device and said display.
- 3. A method for simulating a periodically structured material composed of unit cells repeated infinitely, the method comprising the steps of:
- (a) solving a Schrodinger equation for the periodically structured material with use of a period boundary condition of Born von Karman to find Bloch functions and energy values of the periodically structured material for each wave number vector thereof;
- (b) finding an overlap integral, S.sub.im =<.psi..sub.i (k.sub.B) .psi..sub.m (k.sub.A)>, for two adjacent wave number vectors, k.sub.A and k.sub.B ;
- (c) calculating a band array operation matrix: ##EQU19## (d) diagonalizing the band array operation matrix R.sub.mn ; (e) finding, from an eigenvalue, .gamma..sub.p, and an eigenvector, U.sub.np which result from the diagonalization, Bloch functions in a one-to-one relation with two adjacent wave number vectors, k.sub.A and k.sub.B : ##EQU20## such that energy bands are in a one-to-one relation with the two adjacent wave number vectors;
- (f) determining property characteristic values of the periodically structured.sub.-- material from the energy bands; and
- (g) simulating the periodically structured material from the determined properly characteristic values.
- 4. The method as recited in claim 3, further comprising repeating steps (a)-(e) for a predetermined number of wave number vectors.
- 5. The method as recited in claim 3, further comprising:
- (h) inferring an appropriate process for making a periodically structured material having the energy bands found in finding step (e) based on known methods for making analogous materials;
- (i) preparing a periodically structured material having the energy bands found in finding step (e) according to the appropriate process inferred in inferring step (h);
- (j) analyzing the periodically structured material prepared in preparing step (i); and
- (k) feeding back results of the analyzing step (i) to the inferring step (h).
- 6. The method as recited in claim 3, further comprising generating data representing property characteristic values of the periodically structured material from said energy bands in the one-to-one relation with the two adjacent wave number vectors.
Priority Claims (1)
Number |
Date |
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Kind |
5-170413 |
Jul 1993 |
JPX |
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Parent Case Info
This application is a divisional of application Ser. No. 08/151,750, filed on Nov. 15, 1993, now U.S. Pat. No. 5,694,343, the entire contents of which are hereby incorporated by reference.
US Referenced Citations (7)
Non-Patent Literature Citations (2)
Entry |
"Quantum Chemistry Aided Design of Organic Polymers", Jean-Marie Andre et al. World Scientific Lecture And Course Notes In Chemistry--vol. 2, pp. 131 and 133. |
"On the Need for Computing Derivatives of Energy Bands in Band Structure Calculations", J.M. Andre et al., Chemical Physics Letters, vol. 14, No. 4 15 Jun. 1972, pp. 485-488. |
Divisions (1)
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Number |
Date |
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Parent |
151750 |
Nov 1993 |
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